G. Lifante, Integrated photonics: fundamentals, 2003.

, Technological advances in tellurite glasses: properties, processing, and applications, 2017.

R. A. El-mallawany, TELLURITE GLASSES HANDBOOK: physical properties and data, 2018.

K. Hirano, Y. Benino, and T. Komatsu, Rare earth doping into optical nonlinear nanocrystalline phase in transparent TeO2-based glass-ceramics, J. Phys. Chem. Solids, vol.62, issue.11, pp.2075-2082, 2001.

B. Frit and D. Mercurio, Structure cristalline de Tl2TeO3 stéréochimie des éléments Tl(I) Te(IV), Rev Chim Min, vol.17, 1980.

B. Jeansannetas, Glass Structure and Optical Nonlinearities in Thallium(I) Tellurium(IV) Oxide Glasses, J. Solid State Chem, vol.146, issue.2, pp.329-335, 1999.

S. Blanchandin, P. Marchet, P. Thomas, J. Champarnaud-mesjard, B. Frit et al., New investigations within the TeO2-WO3 system: phase equilibrium diagram and glass crystallization, J. Mater. Sci, vol.37, pp.4285-4292, 1999.

S. Blanchandin, P. Thomas, P. Marchet, J. C. Champarnaud-mesjard, and B. Frit, Equilibrium and non-equilibrium phase diagram within the TeO2-rich part of the TeO2-Nb2O5 system, J. Mater. Chem, vol.9, issue.8, pp.1785-1788, 1999.

M. Soulis, A. P. Mirgorodsky, T. Merle-méjean, O. Masson, P. Thomas et al., The role of modifier's cation valence in structural properties of TeO2-based glasses, J. Non-Cryst. Solids, vol.354, issue.2-9, pp.143-149, 2008.

M. Udovic, Formation domain and characterization of new glasses within the Tl2O-TiO2-TeO2 system, Mater. Res. Bull, vol.44, issue.2, pp.248-253, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00352598

N. Boukharrata, P. Thomas, and J. Laval, GeTe 2 O 6 , a germanium tellurate(IV) with an open framework, Acta Crystallogr. C, vol.65, issue.5, pp.23-26, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00389223

D. Linda, Optical properties of tellurite glasses elaborated within the TeO2-Tl2O-Ag2O and TeO2-ZnO-Ag2O ternary systems, J. Alloys Compd, vol.561, pp.151-160, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00907485

N. Ghribi, Thermal, optical and structural properties of glasses within the TeO2TiO2ZnO system, J. Alloys Compd, vol.622, pp.333-340, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01093138

N. Ghribi, Structural, mechanical and optical investigations in the TeO2-rich part of the TeO2-GeO2-ZnO ternary glass system, Solid State Sci, vol.40, pp.20-30, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01102593

M. R. Zaki, D. Hamani, M. Dutreilh-colas, J. Duclère, O. Masson et al., Synthesis, thermal, structural and linear optical properties of new glasses within the TeO2-TiO2-WO3 system, J. Non-Cryst. Solids, vol.484, pp.139-148, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01702013

E. Fargin, Optical non-linearity in oxide glasses, J. Non-Cryst. Solids, vol.203, pp.96-101, 1996.
URL : https://hal.archives-ouvertes.fr/hal-01549975

S. Suehara, Non-linear optical properties of TeO2-based glasses: ab initio static finite-field and time-dependent calculations, J. Non-Cryst. Solids, pp.730-733, 2004.

S. Suehara, Localized hyperpolarizability approach to the origin of nonlinear optical properties in Te O 2 -based materials, Phys. Rev. B, vol.70, issue.20, 2004.

E. M. Roginskii, Comparative Analysis of the Electronic Structure and Nonlinear Optical Susceptibility of ?-TeO 2 and ?-TeO 3 Crystals, J. Phys. Chem. C, vol.121, issue.22, pp.12365-12374, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01881171

A. P. Mirgorodsky, M. Soulis, P. Thomas, T. Merle-méjean, and M. Smirnov, Ab initio study of the nonlinear optical susceptibility of Te O 2 -based glasses, Phys. Rev. B, vol.73, issue.13, 2006.

M. Soulis, Local molecular orbitals and hyper-susceptibility of TeO2 glass, J. Non-Cryst. Solids, vol.354, issue.2-9, pp.199-202, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00256822

M. Smirnov, A. Mirgorodsky, O. Masson, and P. Thomas, Quantum Mechanical Study of Pre-Dissociation Enhancement of Linear and Nonlinear Polarizabilities of (TeO 2 ) n Oligomers as a Key to Understanding the Remarkable Dielectric Properties of TeO 2 Glasses, J. Phys. Chem. A, vol.116, issue.37, pp.9361-9369, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00756732

M. R. Zaki, Synthèse, structure et propriétés optiques de nouveaux verres à base d'oxyde de tellure dans les systèmes TeO2-TiO2-WO3 et TeO2-NbO2,5-WO3, 2018.

N. Ghribi, Synthesis, structural and mechanical investigations of new tellurite materials for non-linear optical applications, 2015.
URL : https://hal.archives-ouvertes.fr/tel-01131811

I. N. Sapian, M. I. Yusof, and A. K. Yahya, Elastic and Structural Properties of (95-x)TeO2-5La2O3-xTiO2 Lanthanum Tellurite Glass System, Chalcogenide Lett, vol.11, issue.10, pp.471-484, 2014.

M. A. Villegas and J. M. Navarro, Physical and structural properties of glasses in the TeO2-TiO2-Nb2O5 system, J. Eur. Ceram. Soc, vol.27, issue.7, pp.2715-2723, 2007.

E. D. Zanotto and J. C. Mauro, The glassy state of matter: Its definition and ultimate fate, J. Non-Cryst. Solids, vol.471, pp.490-495, 2017.

W. H. Zachariasen, THE ATOMIC ARRANGEMENT IN GLASS, J. Am. Chem. Soc, vol.54, issue.10, pp.3841-3851, 1932.

A. J. Leadbetter and A. C. Wright, Diffraction studies of glass structure, J. Non-Cryst. Solids, vol.7, issue.1, pp.23-36, 1972.

C. A. Angell, The old problems of glass and the glass transition, and the many new twists, Proc. Natl. Acad. Sci. U. S. A, vol.92, issue.15, pp.6675-6682, 1995.

A. K. Varshneya, Fundamentals of inorganic glasses: Arun K. Varshneya, 1994.

P. G. Debenedetti and F. H. Stillinger, Supercooled liquids and the glass transition, Nature, vol.410, issue.6825, pp.259-267, 2001.

W. Vogel, THE DEVELOPMENT OF THE CLASSICAL STRUCTURE THEORIES, Structure and Crystallization of Glasses, pp.14-20, 1971.

H. Scholze and . Glass, , 1991.

W. Vogel, Glass Chemistry, 1994.

A. K. Yadav and P. Singh, A review of the structures of oxide glasses by Raman spectroscopy, RSC Adv, vol.5, issue.83, pp.67583-67609, 2015.

J. G. Thorbahn and J. W. Zwanziger, Compositional dependence of the stress-optic response in zinc tellurite glasses, J. Non-Cryst. Solids, vol.381, pp.48-53, 2013.

H. Beyer, Verfeinerung der Kristallstruktur von Tellurit, dem rhombischen TeO 2, Z. Für Krist, vol.124, issue.3, pp.228-237, 1967.

J. C. Champarnaud-mesjard, S. Blanchandin, P. Thomas, A. Mirgorodsky, T. Merle-méjean et al., Crystal structure, Raman spectrum and lattice dynamics of a new metastable form of tellurium dioxide: ?-TeO2, J. Phys. Chem. Solids, vol.61, issue.9, pp.1499-1507, 2000.

A. P. Mirgorodsky, T. Merle-méjean, J. Champarnaud, P. Thomas, and B. Frit, Dynamics and structure of TeO 2 polymorphs: model treatment of paratellurite and tellurite; Raman scattering evidence for new ?-and ?-phases, J. Phys. Chem. Solids, vol.61, issue.4, pp.501-509, 2000.

P. A. Thomas, The crystal structure and absolute optical chirality of paratellurite, ?-TeO 2, J. Phys. C Solid State Phys, vol.21, issue.25, pp.4611-4627, 1988.

M. Weil, Redetermination of the ? -form of tellurium dioxide, IUCrData, vol.2, issue.12, 2017.

M. Ceriotti, F. Pietrucci, and M. Bernasconi, Ab initio study of the vibrational properties of crystalline TeO 2 : The ? , ? , and ? phases, Phys. Rev. B, vol.73, issue.10, p.104304, 2006.

D. Hamani, Cristallochimie de matériaux à base de dioxyde de tellure : vers un modèle structural pour l'étude des composés vitreux, 2010.

M. Krauzman and J. P. Mathieu, Directional dispersion of polar phonons in paratellurite TeO2, Comptes Rendus Académie Sci. Sér. B, vol.273, issue.9, pp.342-344, 1971.

B. Ayrault, E. Decamps, F. Abba, Y. Marqueton, and M. Durand, Lattice dynamics of paratellurite TeO2, Solid State Commun, vol.11, pp.639-643, 1972.

K. Kingma and R. J. Hemley, Raman spectroscopic study of microcrystalline silica, Am. Mineral, vol.79, pp.269-273, 1994.

C. Platte and M. Trömel, Nickelditellurat(IV): Sauerstoffkoordinationszahl Fünf am vierwertigen Tellur, Acta Crystallogr. B, vol.37, issue.6, pp.1276-1278, 1981.

K. Hanke, V. Kup?ik, and O. Lindqvist, The crystal structure of CuTe 2 O 5, Acta Crystallogr. B, vol.29, issue.5, pp.963-970, 1973.

M. Trömel and D. Schmid, Tellurite des zweiwertigen Mangans, Kobalts und Nickels, Z. Für Anorg. Allg. Chem, vol.387, issue.2, pp.230-240, 1972.

M. G. Johnston and W. T. Harrison, Manganese tellurite, ?-MnTe 2 O 5, Acta Crystallogr. Sect. E Struct. Rep. Online, vol.58, issue.7, pp.59-61, 2002.

B. Jeansannetas, , 1998.

, Crystal structure of dilead tritellurate (IV), Pb2Te3O8, Z. Für Krist. -New Cryst. Struct, vol.216, issue.1-4, 2001.

F. Folger, Die Kristallstruktur von Li2TeO3, Z. F?r Anorg. Allg. Chem, vol.411, issue.2, pp.103-110, 1975.

R. Masse, J. C. Guitel, and I. Tordjman, Preparation chimique et structure cristalline des tellurites de sodium et d'argent: Na2TeO3, Ag2TeO3, Mater. Res. Bull, vol.15, issue.4, pp.431-436, 1980.

G. B. Johansson and O. Lindqvist, The crystal structure of dipotassium tellurate(IV) trihydrate, K 2 TeO 3 .3H 2 O, Acta Crystallogr. B, vol.34, issue.10, pp.2959-2962, 1978.

B. O. Loopstra and K. Goubitz, The structures of four caesium tellurates, Acta Crystallogr. C, vol.42, issue.5, pp.520-523, 1986.

L. Andersen, O. Lindqvist, and J. Moret, The structures of magnesium tellurate(IV) hexahydrate, MgTeO3.6H2O, and magnesium selenate(IV) hexahydrate, MgSeO3.6H2O, Acta Crystallogr. C, vol.40, issue.4, pp.586-589, 1984.

Y. Elerman, Crystal structure of two polymorphous types of SrTeO3, Turk. J. Phys, vol.17, pp.465-473, 1993.

M. Koçak, C. Platte, and M. Trömel, Über Verschiedene Formen von BaTeO3, Z. Für Anorg. Allg. Chem, vol.453, issue.1, pp.93-97, 1979.

K. Kohn, K. Inoue, O. Horie, S. Akimoto-;-m-=-mg, . Mn et al., Crystal chemistry of MSeO3 and MTeO3, vol.18, pp.27-37, 1976.

O. Lindqvist, S. J. Jensen, E. E. Tucker, J. Songstad, and S. Svensson, The Crystal Structure of CuTeO3, Acta Chem. Scand, vol.26, pp.1423-1430, 1972.

K. Hanke, Zinktellurit: Kristallstruktur und Beziehungen zu einigen Seleniten, Naturwissenschaften, vol.54, issue.8, pp.199-199, 1967.

B. Frit, D. Mercurio, P. Thomas, and J. Champarnaud-mesjard, Refinement of the crystal structure of dithallium(I) trioxotellurate(IV), TI2TeO3, Z. Für Krist. -New Cryst. Struct, vol.214, issue.4, 1999.

S. Blanchandin, J. C. Champarnaud-mesjard, P. Thomas, and B. Frit, Crystal structure of BiNbTe2O8, Solid State Sci, vol.2, issue.2, pp.223-228, 2000.

Y. Arnaud, M. T. Averbuch-pouchot, A. Durif, and J. Guidot, Structure cristalline de l'oxyde mixte de molybdène-tellure: MoTe 2 O 7, Acta Crystallogr. B, vol.32, issue.5, pp.1417-1420, 1976.

J. C. Bart and N. Giordano, ChemInform Abstract: THE CRYSTAL STRUCTURE OF A TELLURIUM MOLYBDENUM OXIDE, ?-TE2MOO7, AND THE SYSTEMATICS OF RELATED STRUCTURES, vol.10, 1979.

S. Blanchandin, Etude cristallochimique de quelques phases cristallisées et vitreuses appartenant aux systèmes TeO2, 2000.

W. A. Phillips, Amorphous Solids: Low-Temperature Properties, 1981.

T. Nakayama, Boson peak and terahertz frequency dynamics of vitreous silica, Rep. Prog. Phys, vol.65, issue.8, pp.1195-1242, 2002.

R. O. Pohl, X. Liu, and E. Thompson, Low-temperature thermal conductivity and acoustic attenuation in amorphous solids, Rev. Mod. Phys, vol.74, issue.4, pp.991-1013, 2002.

W. Schirmacher, G. Diezemann, and C. Ganter, Harmonic Vibrational Excitations in Disordered Solids and the 'Boson Peak, Phys. Rev. Lett, vol.81, issue.1, pp.136-139, 1998.

S. N. Taraskin, Y. L. Loh, G. Natarajan, and S. R. Elliott, Origin of the Boson Peak in Systems with Lattice Disorder, Phys. Rev. Lett, vol.86, issue.7, pp.1255-1258, 2001.

T. S. Grigera, V. Martín-mayor, G. Parisi, and P. Verrocchio, Phonon interpretation of the 'boson peak' in supercooled liquids, Nature, vol.422, issue.6929, pp.289-292, 2003.

G. Parisi, On the origin of the boson peak, J. Phys. Condens. Matter, vol.15, issue.11, pp.765-774, 2003.

V. Lubchenko and P. G. Wolynes, The origin of the boson peak and thermal conductivity plateau in low-temperature glasses, Proc. Natl. Acad. Sci, vol.100, pp.1515-1518, 2003.

V. L. Gurevich, D. A. Parshin, and H. R. Schober, Anharmonicity, vibrational instability, and the Boson peak in glasses, Phys. Rev. B, vol.67, issue.9, p.94203, 2003.

V. L. Gurevich, D. A. Parshin, and H. R. Schober, Pressure dependence of the boson peak in glasses, Phys. Rev. B, vol.71, issue.1, 2005.

O. Pilla, The low energy excess of vibrational states in v-SiO 2 : the role of transverse dynamics, J. Phys. Condens. Matter, vol.16, issue.47, pp.8519-8530, 2004.

V. Gurarie and A. Altland, Phonons in Random Elastic Media and the Boson Peak, Phys. Rev. Lett, vol.94, issue.24, p.245502, 2005.

G. P. Johari, Librational heat capacity of fullerenes in the Einstein model, J. Chem. Phys, vol.119, issue.22, pp.11912-11916, 2003.

G. P. Johari, Molecular inertial effects in liquids: Poley absorption, collision-induced absorption, low-frequency Raman spectrum and Boson peaks, J. Non-Cryst. Solids, pp.114-127, 2002.

G. Power, G. P. Johari, and J. K. Vij, Relaxation strength of localized motions in Dsorbitol and mimicry of glass-softening thermodynamics, J. Chem. Phys, vol.119, issue.1, pp.435-442, 2003.

A. I. Chumakov, Collective Nature of the Boson Peak and Universal Transboson Dynamics of Glasses, Phys. Rev. Lett, vol.92, issue.24, p.245508, 2004.

S. N. Yannopoulos, G. N. Papatheodorou, and G. Fytas, Low-energy excitations in noncrystalline arsenic trioxide, J. Chem. Phys, vol.107, issue.5, pp.1341-1349, 1997.

G. N. Greaves, Identifying Vibrations That Destabilize Crystals and Characterize the Glassy State, Science, vol.308, issue.5726, pp.1299-1302, 2005.

R. S. Krishnan, The scattering of light in fused quartz and its Raman spectrum, Proc. Indian Acad. Sci. -Sect. A, vol.37, issue.3, pp.377-384, 1953.

P. Flubacher, A. J. Leadbetter, J. A. Morrison, and B. P. Stoicheff, The low-temperature heat capacity and the Raman and Brillouin spectra of vitreous silica, J. Phys. Chem. Solids, vol.12, issue.1, pp.53-65, 1959.

A. P. Sokolov, E. Rössler, A. Kisliuk, and D. Quitmann, Dynamics of strong and fragile glass formers: Differences and correlation with low-temperature properties, Phys. Rev. Lett, vol.71, issue.13, pp.2062-2065, 1993.

D. A. Parshin, Soft potential model and universal properties of glasses, Phys. Scr, vol.49, pp.180-185, 1993.

D. A. Parshin, H. R. Schober, and V. L. Gurevich, Vibrational instability, two-level systems, and the boson peak in glasses, Phys. Rev. B, vol.76, issue.6, p.64206, 2007.

W. Schirmacher, Thermal conductivity of glassy materials and the "boson peak, Europhys. Lett. EPL, vol.73, issue.6, pp.892-898, 2006.

W. Schirmacher, G. Ruocco, and T. Scopigno, Acoustic Attenuation in Glasses and its Relation with the Boson Peak, Phys. Rev. Lett, vol.98, issue.2, p.25501, 2007.

E. Duval, A. Boukenter, and T. Achibat, Vibrational dynamics and the structure of glasses, J. Phys. Condens. Matter, vol.2, issue.51, pp.10227-10234, 1990.

E. Duval, Inelastic light, neutron, and X-ray scattering related to the heterogeneous elasticity of glasses, J. Non-Cryst. Solids, pp.103-108, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02360334

B. Rossi, G. Viliani, E. Duval, L. Angelani, and W. Garber, Temperature-dependent vibrational heterogeneities in harmonic glasses, Europhys. Lett. EPL, vol.71, issue.2, pp.256-261, 2005.

A. Tanguy, J. P. Wittmer, F. Leonforte, and J. Barrat, Continuum limit of amorphous elastic bodies: A finite-size study of low-frequency harmonic vibrations, Phys. Rev. B, vol.66, issue.17, p.174205, 2002.

F. Leonforte, R. Boissière, A. Tanguy, J. P. Wittmer, and J. Barrat, Continuum limit of amorphous elastic bodies. III. Three-dimensional systems, Phys. Rev. B, vol.72, issue.22, p.224206, 2005.
URL : https://hal.archives-ouvertes.fr/hal-02538306

F. Léonforte, A. Tanguy, J. P. Wittmer, and J. Barrat, Inhomogeneous Elastic Response of Silica Glass, Phys. Rev. Lett, vol.97, issue.5, p.55501, 2006.

P. W. Anderson, B. I. Halperin, and C. M. Varma, Anomalous low-temperature thermal properties of glasses and spin glasses, Philos. Mag, vol.25, issue.1, pp.1-9, 1972.

C. Levelut, Density fluctuations in oxide glasses investigated by small-angle Xray scattering, J. Appl. Crystallogr, vol.40, issue.s1, pp.512-516, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00175448

T. Deschamps, C. Martinet, D. De-ligny, J. L. Bruneel, and B. Champagnon, Correlation between boson peak and anomalous elastic behavior in GeO 2 glass: An in situ Raman scattering study under high-pressure, J. Chem. Phys, vol.134, issue.23, p.234503, 2011.

T. Deschamps, C. Martinet, D. De-ligny, J. L. Bruneel, and B. Champagnon, Lowfrequency Raman scattering under high pressure in diamond anvil cell: Experimental protocol and application to GeO2 and SiO2 boson peaks, J. Non-Cryst. Solids, vol.358, issue.23, pp.3156-3160, 2012.

B. Champagnon, L. Wondraczek, and T. Deschamps, Boson peak, structural inhomogeneity, light scattering and transparency of silicate glasses, J. Non-Cryst. Solids, vol.355, issue.10-12, pp.712-714, 2009.

S. R. Elliott, A Unified Model for the Low-Energy Vibrational Behaviour of Amorphous Solids, Europhys. Lett. EPL, vol.19, issue.3, pp.201-206, 1992.

E. Duval, A. Boukenter, and B. Champagnon, Vibration Eigenmodes and Size of Microcrystallites in Glass: Observation by Very-Low-Frequency Raman Scattering, Phys. Rev. Lett, vol.56, issue.19, pp.2052-2055, 1986.

S. Yamanaka and M. Miyake, Study of the ternary Ti?Te?O system, J. Common Met, vol.159, pp.179-189, 1990.

G. Meunier, J. Galy-;-m-=-ti, . Sn, . Hf, and ). Zr, Sur une déformation inédite du reseau de type fluorine, Structure cristalline des phases MTe3O8, vol.27, pp.602-608, 1971.

M. Udovic, M. Valant, and D. Suvorov, Dielectric characterisation of ceramics from the TiO2-TeO2 system, J. Eur. Ceram. Soc, vol.21, issue.10, pp.1735-1738, 2001.

T. B. Ghosh, S. Dhabal, and A. K. Datta, On crystallite size dependence of phase stability of nanocrystalline TiO2, J. Appl. Phys, vol.94, issue.7, pp.4577-4582, 2003.

D. A. Hanaor and C. C. Sorrell, Review of the anatase to rutile phase transformation, J. Mater. Sci, vol.46, issue.4, pp.855-874, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02308408

C. M. Henderson, K. S. Knight, and A. R. Lennie, Temperature Dependence of Rutile (TiO2) and Geikielite (MgTiO3) Structures Determined Using Neutron Powder Diffraction, Open Mineral. J, vol.3, pp.1-11, 2009.

Z. Cheng, T. Liu, C. Yang, H. Gan, F. Zhang et al., Study on the electronic structures of the reduced anatase TiO2 by the first-principle calculation, J. Phys. Chem. Solids, vol.73, issue.2, pp.302-307, 2012.

J. K. Burdett, T. Hughbanks, G. J. Miller, J. W. Richardson, and J. V. Smith, Structuralelectronic relationships in inorganic solids: powder neutron diffraction studies of the rutile and anatase polymorphs of titanium dioxide at 15 and 295 K, J. Am. Chem. Soc, vol.109, issue.12, pp.3639-3646, 1987.

C. C. Evans, Nonlinear optics in titanium dioxide: from bulk to integrated optical devices, 2013.

L. Martinu and D. Poitras, Plasma deposition of optical films and coatings: A review, J. Vac. Sci. Technol. Vac. Surf. Films, vol.18, issue.6, pp.2619-2645, 2000.

L. Bindi, C. Cipriani, &. The-crystal, . Structure-of, . Winstanleyite et al., Can. Mineral, vol.41, issue.6, pp.1469-1473, 2003.

W. L. Roberts, T. J. Campbell, and G. R. Rapp, Encyclopedia of minerals, 2, 1990.

O. Noguera, Propriétés structurales, vibrationnelles et diélectriques de matériaux à base d'oxyde de tellure, 2003.

M. Soulis, Structure et propriétés optiques non linéaires des verres à base d'oxyde de tellure: approche cristallochimique et calculs ab-inition, 2007.

S. Kim, T. Yoko-;-m-=-sc, V. Ti, . Nb, T. Mo et al., Nonlinear Optical Properties of TeO2-Based Glasses: MOx-TeO2, vol.78, pp.1061-1065, 1995.

J. C. Sabadel, , 1997.

J. C. Sabadel, Structural and Nonlinear Optical Characterizations of Tellurium Oxide-Based Glasses: TeO2-BaO-TiO2, J. Solid State Chem, vol.132, issue.2, pp.411-419, 1997.

M. Udovic, Thermal characteristics, Raman spectra and structural properties of new tellurite glasses within the Bi2O3-TiO2-TeO2 system, J. Solid State Chem, vol.179, issue.10, pp.3252-3259, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00093917

S. S. Sukhov, Structure and properties of erbium-titanium-tellurite glass, Glass Ceram, vol.63, issue.11-12, pp.399-402, 2006.

N. Gupta, A. Khanna, F. Gonzàlez, and R. Iordanova, Thermal characteristics, Raman spectra, optical and structural properties of TiO2-Bi2O3-B2O3-TeO2 glasses, p.70005, 2016.

Y. Dimitriev, E. Kaschieva, and E. Gurov, Phase diagram of the TeO2-GeO2 system, Mater. Res. Bull, vol.11, issue.11, pp.1397-1403, 1976.

M. Imaoka, Glass-formation range and glass structure, pp.149-164, 1962.

W. Vogel, H. Burger, G. Winterstein, C. Ludwig, and W. Jaekel, Silikattechnik, vol.25, p.209, 1974.

A. G. Kalampounias, N. K. Nasikas, and G. N. Papatheodorou, Structural investigations of the xTeO2-(1?x)GeO2 (x=0, 0.2, 0.4, 0.6, 0.8 and 1) tellurite glasses: A composition dependent Raman spectroscopic study, J. Phys. Chem. Solids, vol.72, issue.9, pp.1052-1056, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00778410

M. Mattarelli, Optical spectroscopy of TeO2-GeO2 glasses activated with Er3+ and Tm3+ ions, J. Non-Cryst. Solids, vol.351, issue.21, pp.1759-1763, 2005.

J. Galy and O. Lindqvist, The crystal structure of Te3Nb2O11, J. Solid State Chem, vol.27, issue.3, pp.279-286, 1979.

F. Garbassi, J. C. Bart, and G. Petrini, XPS study of tellurium-niobium and tellurium-tantalum oxide systems, J. Electron Spectrosc. Relat. Phenom, vol.22, issue.2, pp.95-107, 1981.

O. Yamaguchi, T. Shirai, Y. Mukaida, and K. Shimizu, Formation and transformation of 3TeO 2 ·Nb 2 O 5, J Chem Soc Dalton Trans, issue.8, pp.2087-2090, 1988.

S. Blanchandin, J. C. Champarnaud-mesjard, P. Thomas, and B. Frit, Crystal structure of Nb2Te4O13, J. Alloys Compd, vol.306, issue.1-2, pp.175-185, 2000.

I. A. Khodyakova, V. A. Dolgikh, B. A. Popovkin, A. V. Novoselova, and R. J. , Inorg. Chem, vol.27, pp.1235-1241, 1982.

U. Hoppe, E. Yousef, C. Rüssel, J. Neuefeind, and A. C. Hannon, Structure of zinc and niobium tellurite glasses by neutron and x-ray diffraction, J. Phys. Condens. Matter, vol.16, issue.9, p.1645, 2004.

A. Berthereau, E. Fargin, A. Villezusanne, R. Olazcuaga, G. L. Flem et al., Determination of Local Geometries around Tellurium in TeO2-Nb2O5and TeO2-Al2O3Oxide Glasses by XANES and EXAFS: Investigation of Electronic Properties of Evidenced Oxygen Clusters byAb InitioCalculations, J. Solid State Chem, vol.126, issue.2, pp.143-151, 1996.

Y. B. Saddeek, E. R. Shaaban, F. M. Abdel-rahim, and K. H. Mahmoud, Thermal analysis and infrared study of Nb 2 O 5 -TeO 2 glasses, Philos. Mag, vol.88, issue.25, pp.3059-3073, 2008.

A. Kaur, A. Khanna, V. G. Sathe, F. Gonzalez, and B. Ortiz, Optical, thermal, and structural properties of Nb 2 O 5 -TeO 2 and WO 3 -TeO 2 glasses, Phase Transit, vol.86, issue.6, pp.598-619, 2013.

A. Berthereau, Nonlinear optical properties of some tellurium (IV) oxide glasses, Mater. Res. Bull, vol.29, issue.9, pp.933-941, 1994.
URL : https://hal.archives-ouvertes.fr/hal-01549885

T. Hayakawa, M. Hayakawa, M. Nogami, and P. Thomas, ) glasses, Nonlinear optical properties and glass structure for MO-Nb2O5-TeO2, vol.32, pp.448-455, 2010.

M. Marinov and V. Kozhukharov, Phase equilibrium in the zinc oxide-tellurium dioxide system, Dokl. Bolg. Akad. Nauk, vol.25, issue.3, pp.329-331

C. R. Feger, G. L. Schimek, J. W. Kolis-;-m=mn, . Co, . Ni et al., Hydrothermal Synthesis and Characterization ofM2Te3O8, J. Solid State Chem, vol.143, issue.2, pp.246-253, 1999.

V. Kozhukharov, H. Bürger, S. Neov, and B. Sidzhimov, Atomic arrangement of a zinctellurite glass, Polyhedron, vol.5, issue.3, pp.771-777, 1986.

J. M. Nawash, A study on the crystal growth of select II-VI oxides by czochralski and Bridgman techniques, 2006.

M. Schumm, ZnO-based semiconductors studied by Raman spectroscopy: semimagnetic alloying, doping and nanostructures, 2008.

H. Morko, Z. Mit-zgr, and . Oxide, , 2009.

G. Aminoff, Z. Für Krist, vol.58, pp.495-505, 1921.

P. Zhang, J. Zhu, Z. Zhao, X. Gu, J. Lin et al., Can. Mineral, vol.42, issue.3, pp.763-768, 2004.

T. Sekiya, N. Mochida, and A. Ohtsuka, Raman spectra of MO?TeO2 (M = Mg, Sr, Ba and Zn) glasses, J. Non-Cryst. Solids, vol.168, issue.1-2, pp.106-114, 1994.

H. Bürger, K. Kneipp, H. Hobert, W. Vogel, V. Kozhukharov et al., Glass formation, properties and structure of glasses in the TeO2?ZnO system, J. Non-Cryst. Solids, vol.151, issue.1-2, pp.134-142, 1992.

J. M. Nawash and K. G. Lynn, ZnTeO 3 crystal growth by a modified Bridgman technique, Mater. Res. Bull, vol.60, pp.819-823, 2014.

V. Kozhukharov, M. Marinov, and G. Grigorova, Glass-formation range in binary tellurite systems containing transition metal oxides, J. Non-Cryst. Solids, vol.28, issue.3, pp.429-430, 1978.

H. A. Sidek, S. Rosmawati, Z. A. Talib, M. K. Halimah, and W. M. Daud, Synthesis and Optical Properties of ZnO-TeO2 Glass System, Am. J. Appl. Sci, vol.6, issue.8, pp.1489-1494, 2009.

M. Soulis, J. Duclère, T. Hayakawa, V. Couderc, M. Dutreilh-colas et al., Second Harmonic Generation induced by optical poling in new TeO2-Tl2O-ZnO glasses, Mater. Res. Bull, vol.45, issue.5, pp.551-557, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00481322

E. Stavrou, Raman scattering boson peak and differential scanning calorimetry studies of the glass transition in tellurium-zinc oxide glasses, J. Phys. Condens. Matter, vol.22, issue.19, p.195103, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00529231

R. El-mallawany, A. Abousehly, A. A. El-rahamani, and E. Yousef, Radiation effect on the ultrasonic attenuation and internal friction of tellurite glasses, Mater. Chem. Phys, vol.52, issue.2, pp.161-165, 1998.

A. Makishima and J. D. Mackenzie, Calculation of bulk modulus, shear modulus and Poisson's ratio of glass, J. Non-Cryst. Solids, vol.17, issue.2, pp.147-157, 1975.

R. Bogue and R. J. Sladek, Elasticity and thermal expansivity of (AgI ) x ( AgPO 3 ) 1 ? x glasses, Phys. Rev. B, vol.42, issue.8, pp.5280-5288, 1990.

E. F. Lambson, G. A. Saunders, B. Bridge, and R. A. El-mallawany, The elastic behaviour of TeO2 glass under uniaxial and hydrostatic pressure, J. Non-Cryst. Solids, vol.69, issue.1, pp.117-133, 1984.

B. Bridge, N. D. Patel, and D. N. Waters, On the Elastic Constants and Structure of the Pure Inorganic Oxide Glasses, Phys. Status Solidi A, vol.77, issue.2, pp.655-668, 1983.

T. , Elastic Properties and Short-to Medium-Range Order in Glasses, J. Am. Ceram. Soc, vol.90, issue.10, pp.3019-3039, 2007.

R. El-mallawany, Ultrasonic Detection of Microphase Separation in Tellurite Glasses, Phys. Status Solidi A, vol.133, issue.2, pp.245-251, 1992.

R. El-mallawany, Longitudinal elastic constants of tellurite glasses, J. Appl. Phys, vol.73, issue.10, pp.4878-4880, 1993.

S. Rosmawati, .. H. , and .. H. , Effect of Zinc on the Physical Properties of Tellurite Glass, J. Appl. Sci, vol.8, issue.10, pp.1956-1961, 2008.

N. B. Mohamed, A. K. Yahya, M. S. Deni, S. N. Mohamed, M. K. Halimah et al., Effects of concurrent TeO2 reduction and ZnO addition on elastic and structural properties of (90?x)TeO2-10Nb2O5-(x)ZnO glass, J. Non-Cryst. Solids, vol.356, pp.1626-1630, 2010.

S. Laila, S. N. Supardan, and A. K. Yahya, Effect of ZnO addition and concurrent reduction of V2O5 on network formation and elastic properties of lead vanadate (55?x)V2O5-45PbO-(x)ZnO glass system, J. Non-Cryst. Solids, vol.367, pp.14-22, 2013.

J. Sabadel, P. Armand, F. Terki, J. Pelous, D. Cachau-herreillat et al., Brillouin and low-frequency Raman studies of TeO 2 -BaO-TiO 2 glasses, J. Phys. Chem. Solids, vol.61, issue.11, pp.1745-1750, 2000.

R. El-mallawany, N. El-khoshkhany, and H. Afifi, Ultrasonic studies of (TeO2)50-(V2O5)50?x(TiO2)x glasses, Mater. Chem. Phys, vol.95, issue.2-3, pp.321-327, 2006.

S. Dai, J. Wu, J. Zhang, G. Wang, and Z. Jiang, The spectroscopic properties of Er3+-doped TeO2-Nb2O5 glasses with high mechanical strength performance, Spectrochim. Acta. A. Mol. Biomol. Spectrosc, vol.62, issue.1-3, pp.431-437, 2005.

M. S. Gaafar, M. A. Abdeen, and S. Y. Marzouk, Structural investigation and simulation of acoustic properties of some tellurite glasses using artificial intelligence technique, J. Alloys Compd, vol.509, issue.8, pp.3566-3575, 2011.

D. W. Hall, M. A. Newhouse, N. F. Borrelli, W. H. Dumbaugh, and D. L. Weidman, Nonlinear optical susceptibilities of high-index glasses, Appl. Phys. Lett, vol.54, issue.14, pp.1293-1295, 1989.

S. Kim, T. Yoko, and S. Sakka, Linear and Nonlinear Optical Properties of TeO2 Glass, J. Am. Ceram. Soc, vol.76, issue.10, pp.2486-2490, 1993.

S. and L. Boiteux, Nonlinear optical properties for TiO 2 containing phosphate, borophosphate, and silicate glasses, J. Appl. Phys, vol.81, issue.3, pp.1481-1487, 1997.

T. Cardinal, E. Fargin, V. Nazabal, G. L. Flem, S. L. Boiteux et al., Glass local structure and optical nonlinearities of oxide glasses, J. Non-Cryst. Solids, vol.239, issue.1-3, pp.131-138, 1998.
URL : https://hal.archives-ouvertes.fr/hal-01550177

L. Canioni, M. Martin, B. Bousquet, and L. Sarger, Precise measurements and analysis of linear and nonlinear optical properties of glass materials near 1.5 ?m, Opt. Commun, vol.151, issue.4-6, pp.241-246, 1998.
URL : https://hal.archives-ouvertes.fr/hal-01550291

S. Kim, Nonlinear optical properties of TeO2-based glasses: Li(Na and K)2O-TeO2 binary glasses, J. Mater. Res, vol.14, issue.03, pp.1074-1083, 1999.

J. Lin, W. Huang, Z. Sun, C. S. Ray, and D. E. Day, Structure and non-linear optical performance of TeO2-Nb2O5-ZnO glasses, J. Non-Cryst. Solids, vol.336, issue.3, pp.189-194, 2004.

J. Duclère, Third order nonlinear optical properties of a paratellurite single crystal, J. Appl. Phys, vol.123, issue.18, p.183105, 2018.

B. Buchalter and G. R. Meredith, Third-order optical susceptibility of glasses determined by third harmonic generation, Appl. Opt, vol.21, issue.17, p.3221, 1982.

D. Milam, Review and assessment of measured values of the nonlinear refractive-index coefficient of fused silica, Appl. Opt, vol.37, issue.3, p.546, 1998.

S. N. Hodgson and L. Weng, Processing and Characterisation of Sol-Gel Glasses and Powders in the System TeO2-TiO2, J. Mater. Sci, vol.37, pp.3059-3066, 2002.

O. V. Mazurin, M. V. Streltsina, and T. P. Shvaiko-shvaikovskaya, Handbook of Glass Data, Physical Science Data 15, Part A, 1983.

M. R. Özalp, G. Özen, F. Alt?n, V. Kalem, and M. L. Öveço?lu, Effect of Modifier Content on the Crystallization and the Optical Gaps of a TeO2-ZnO Glass, Key Eng. Mater, pp.1907-1910, 2004.

S. Shen, Tellurite Glasses for Broadband Amplifiers and Integrated Optics, J. Am. Ceram. Soc, vol.85, issue.6, pp.1391-1395, 2002.

V. Kalem, G. Özen, F. Alt?n, M. L. Öveço?lu, and M. R. Özalp, Kinetic Study and Optical Investigations of some TeO2-GeO2 Glasses, Key Eng. Mater, pp.1919-1922, 2004.

L. Weng, S. N. Hodgson, and J. Ma, Preparation of TeO2-TiO2 Thin Films by Sol-Gel Process, J. Mater. Sci. Lett, vol.18, pp.2037-2039, 1999.

D. Munoz-martin, Structural and optical properties of tellurite thin film glasses deposited by pulsed laser deposition, Thin Solid Films, vol.520, issue.1, pp.131-137, 2011.

R. Balda, J. Fernández, M. A. Arriandiaga, and J. M. Fernández-navarro, Spectroscopy and frequency upconversion in Nd 3+ -doped TeO 2 -TiO 2 -Nb 2 O 5 glass, J. Phys. Condens. Matter, vol.19, issue.8, p.86223, 2007.

C. Cascales, R. Balda, J. Fernández, M. A. Arriandiaga, and J. M. Fdez-navarro, Fluorescence line narrowing spectroscopy of Eu3+ in TeO2-TiO2-Nb2O5 glass, Opt. Mater, vol.31, issue.7, pp.1092-1095, 2009.

I. Iparraguirre, J. Azkargorta, J. M. Fernández-navarro, M. Al-saleh, J. Fernández et al., Laser action and upconversion of Nd3+ in tellurite bulk glass, J. Non-Cryst. Solids, vol.353, issue.8-10, pp.990-992, 2007.

J. Schroeder, S. K. Saha, M. R. Silvestri, M. Lee, and C. T. Moynihan, Inelastic light scattering in halide glasses at high temperatures: boson peaks and the degree of disorder, J. Non-Cryst. Solids, vol.161, pp.173-176, 1993.

J. Schroeder, M. Lee, S. K. Saha, and P. D. Persans, Raman scattering in glasses at high temperature: the Boson peak and structural relaxation kinetics in glasses, J. Non-Cryst. Solids, vol.222, pp.342-347, 1997.

K. S. Andrikopoulos, D. Christofilos, G. A. Kourouklis, and S. N. Yannopoulos, Pressure dependence of the Boson peak in glassy As2S3 studied by Raman scattering, J. Non-Cryst. Solids, vol.352, pp.4594-4600, 2006.

K. Niss, Influence of Pressure on the Boson Peak: Stronger than Elastic Medium Transformation, Phys. Rev. Lett, vol.99, issue.5, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00187475

A. S. Paranjpe and S. K. Deb, Low frequency Raman scattering from aqueous sucrose solution, J. Non-Cryst. Solids, vol.296, issue.1-2, pp.115-122, 2001.

I. Padureanu, Temperature dependence of the dynamic scattering function in glycerol studied by quasi-elastic slow neutron scattering, Appl. Phys. Mater. Sci. Process, vol.74, issue.0, pp.1342-1344, 2002.

J. Schroeder, W. Wu, J. L. Apkarian, M. Lee, L. Hwa et al., Raman scattering and Boson peaks in glasses: temperature and pressure effects, J. Non-Cryst. Solids, vol.349, pp.88-97, 2004.

Y. Takahashi, M. Osada, H. Masai, and T. Fujiwara, Crystallization and nanometric heterogeneity in glass: In situ observation of the boson peak during crystallization, Phys. Rev. B, vol.79, issue.21, 2009.

Y. Takahashi, K. Nakamura, M. Osada, and T. Fujiwara, Structural relaxation and quasi-elastic light scattering in glass: Approach by ferroelectric and ion-conducting phases, Sci. Rep, vol.2, issue.1, 2012.

P. Mezeix, F. Célarié, P. Houizot, Y. Gueguen, F. Muñoz et al., Elasticity and viscosity of BaOTiO2SiO2 glasses in the 0.9 to 1.2Tg temperature interval, J. Non-Cryst. Solids, pp.45-52, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01395442

G. Roebben, B. Bollen, A. Brebels, J. Van-humbeeck, O. Van-der et al., Impuls excitation appartus to measure resonant frequencies, elastic moduli, and internal froction at room and high temperature, Rev Sci Instrum, vol.68, p.4511, 1997.

B. E. Warren, X-ray diffraction, 1990.

R. W. Boyd, Nonlinear optics, 2003.

L. Brillouin, Diffusion de la lumière et des rayons X par un corps transparent homogène: Influence de l'agitation thermique, Ann. Phys, vol.9, issue.17, pp.88-122, 1922.

A. , Zur Quantentheorie der Dispersion, Naturwissenschaften, vol.11, issue.43, pp.873-875, 1923.

C. V. Raman and K. S. Krishnan, A New Type of Secondary Radiation, Nature, vol.121, issue.3048, pp.501-502, 1928.

D. A. Long, The Raman Effect, 2002.

D. De-sousa-menses, FOCUS version 1.0, software utility for the creation of optical function

J. B. Wachtman, W. E. Tefft, D. G. Lam, and C. S. Apstein, Exponential Temperature Dependence of Young's Modulus for Several Oxides, Phys. Rev, vol.122, issue.6, pp.1754-1759, 1961.

A. Veber, M. R. Cicconi, H. Reinfelder, and D. De-ligny, Combined Differential scanning calorimetry, Raman and Brillouin spectroscopies: A multiscale approach for materials investigation, Anal. Chim. Acta, vol.998, pp.37-44, 2018.

F. Urbach, The Long-Wavelength Edge of Photographic Sensitivity and of the Electronic Absorption of Solids, Phys. Rev, vol.92, issue.5, pp.1324-1324, 1953.

G. D. Cody, T. Tiedje, B. Abeles, B. Brooks, and Y. Goldstein, Disorder and the Optical-Absorption Edge of Hydrogenated Amorphous Silicon, Phys. Rev. Lett, vol.47, issue.20, pp.1480-1483, 1981.
URL : https://hal.archives-ouvertes.fr/jpa-00220920

J. Tauc, Optical properties and electronic structure of amorphous Ge and Si, Mater. Res. Bull, vol.3, issue.1, pp.37-46, 1968.

M. Sheik-bahae, A. A. Said, T. Wei, D. J. Hagan, and E. W. Van-stryland, Sensitive measurement of optical nonlinearities using a single beam, IEEE J. Quantum Electron, vol.26, issue.4, pp.760-769, 1990.

C. Duverger, M. Bouazaoui, and S. Turrell, Raman spectroscopic investigations of the effect of the doping metal on the structure of binary tellurium-oxide glasses, J. Non-Cryst. Solids, vol.220, issue.2-3, pp.169-177, 1997.

M. B. Smirnov and V. Y. Kazimirov, LADY: Software for lattice dynamics simulations, JINR Commun, vol.14, p.159, 2001.

M. Kunz and I. D. Brown, Out-of-Center Distortions around Octahedrally Coordinated d0 Transition Metals, J. Solid State Chem, vol.115, issue.2, pp.395-406, 1995.

J. Tauc and A. Menth, States in the gap, J. Non-Cryst. Solids, vol.8, issue.10, pp.569-585, 1972.

I. Kabalci, N. Ö. Körpe, T. Duran, and M. Özdemir, Optical properties and crystallization kinetics of (TeO 2 )(ZnO)(TiO 2 ) glasses: Optical properties and crystallization kinetics of (TeO 2 )(ZnO)(TiO 2 ) glasses, Phys. Status Solidi C, vol.8, issue.9, pp.2629-2632, 2011.