L. Berthier and G. Biroli, Theoretical perspective on the glass transition and amorphous materials, Reviews of Modern Physics, vol.2, issue.2, p.587, 2011.
DOI : 10.1103/PhysRevB.73.172203

URL : https://hal.archives-ouvertes.fr/hal-00608672

G. Adam and J. H. Gibbs, On the Temperature Dependence of Cooperative Relaxation Properties in Glass???Forming Liquids, The Journal of Chemical Physics, vol.250, issue.1, p.139, 1965.
DOI : 10.1063/1.1729095

W. Gotze and L. Sjogren, Relaxation processes in supercooled liquids, Reports on Progress in Physics, vol.55, issue.3, p.241, 1992.
DOI : 10.1088/0034-4885/55/3/001

G. Biroli, J. Bouchaud, K. Miyazaki, and D. R. Reichman, Inhomogeneous Mode-Coupling Theory and Growing Dynamic Length in Supercooled Liquids, Physical Review Letters, vol.1, issue.19, p.195701, 2006.
DOI : 10.1103/PhysRevE.57.5771

D. Chandler and J. P. Garrahan, Dynamics on the Way to Forming Glass: Bubbles in Space-Time, Annual Review of Physical Chemistry, vol.61, issue.1, p.191, 2010.
DOI : 10.1146/annurev.physchem.040808.090405

J. Bouchaud and G. Biroli, Nonlinear susceptibility in glassy systems: A probe for cooperative dynamical length scales, Physical Review B, vol.1, issue.6, p.64204, 2005.
DOI : 10.1063/1.479545

C. Crauste-thibierge, C. Brun, F. Ladieu, D. L-'hôte, G. Biroli et al., Evidence of Growing Spatial Correlations at the Glass Transition from Nonlinear Response Experiments, Physical Review Letters, vol.104, issue.16, p.165703, 2010.
DOI : 10.1103/PhysRevLett.97.095703

URL : https://hal.archives-ouvertes.fr/cea-01394784

T. Bauer, P. Lunkenheimer, and A. Loidl, Cooperativity and the Freezing of Molecular Motion at the Glass Transition, Physical Review Letters, vol.111, issue.22, p.225702, 2013.
DOI : 10.1016/j.tca.2010.09.016

M. Michl, . Th, P. Bauer, A. Lunkenheimer, and . Loidl, Nonlinear dielectric spectroscopy in a fragile plastic crystal, The Journal of Chemical Physics, vol.144, issue.11, p.114506, 2016.
DOI : 10.1038/nmat2304

R. Casalini, D. Fragiadakis, and C. M. Roland, Dynamic correlation length scales under isochronal conditions, The Journal of Chemical Physics, vol.142, issue.6, p.64504, 2015.
DOI : 10.1103/physreve.90.042312

URL : http://polymerphysics.net/pdf/nonlinear+PC+PG.pdf

L. Berthier, G. Biroli, J. Bouchaud, L. Cipeletti, D. Masri et al., Direct Experimental Evidence of a Growing Length Scale Accompanying the Glass Transition, Science, vol.310, issue.5755, p.1797, 2005.
DOI : 10.1126/science.1120714

URL : https://hal.archives-ouvertes.fr/cea-01395308

C. Dalle-ferrier, C. Thibierge, C. Alba-simionesco, L. Berthier, G. Biroli et al., Spatial correlations in the dynamics of glassforming liquids: Experimental determination of their temperature dependence, Physical Review E, vol.51, issue.4, p.41510, 2007.
DOI : 10.1088/1742-5468/2006/03/P03006

URL : https://hal.archives-ouvertes.fr/cea-01395180

S. Albert, . Th, M. Bauer, G. Michl, J. Biroli et al., Fifth-order susceptibility unveils growth of thermodynamic amorphous order in glass-formers, Science, vol.84, issue.2, p.1308, 2016.
DOI : 10.1103/PhysRevB.84.104204

URL : https://hal.archives-ouvertes.fr/cea-01394421

J. M. Brader, M. Siebenbürger, M. Ballauff, K. Reinheimer, M. Wilhelm et al., Nonlinear response of dense colloidal suspensions under oscillatory shear: Mode-coupling theory and Fourier transform rheology experiments, Physical Review E, vol.51, issue.6, p.61401, 2010.
DOI : 10.1007/s00397-007-0254-z

URL : http://arxiv.org/pdf/1010.2587

R. Seyboldt, D. Merger, F. Coupette, M. Siebenbürger, M. Ballauff et al., Divergence of the third harmonic stress response to oscillatory strain approaching the glass transition, Soft Matter, vol.3, issue.43, p.8825, 2016.
DOI : 10.1122/1.1917843

M. Tarzia, G. Biroli, A. Lefèvre, and J. Bouchaud, Anomalous nonlinear response of glassy liquids: General arguments and a mode-coupling approach, The Journal of Chemical Physics, vol.132, issue.5, p.54501, 2010.
DOI : 10.1103/PhysRevE.72.031509

R. Richert, Non-linear dielectric signatures of entropy changes in liquids subject to time dependent electric fields, The Journal of Chemical Physics, vol.144, issue.11, p.114501, 2016.
DOI : 10.1016/j.jnoncrysol.2010.05.088

P. Kim, A. R. Young-gonzales, and R. Richert, Dynamics of glass-forming liquids. XX. Third harmonic experiments of non-linear dielectric effects versus a phenomenological model, The Journal of Chemical Physics, vol.78, issue.6, p.64510, 2016.
DOI : 10.1103/PhysRevE.85.051502

C. Brun, F. Ladieu, D. L-'hôte, M. Tarzia, G. Biroli et al., Nonlinear dielectric susceptibilities: Accurate determination of the growing correlation volume in a supercooled liquid, Physical Review B, vol.84, issue.10, p.104204, 2011.
DOI : 10.1021/jp802097u

URL : https://hal.archives-ouvertes.fr/cea-01394742

C. Brun, C. Crauste-thibierge, F. Ladieu, and D. L-'hôte, Study of the heating effect contribution to the nonlinear dielectric response of a supercooled liquid, The Journal of Chemical Physics, vol.133, issue.23, p.234901, 2010.
DOI : 10.1016/S0040-6031(03)00090-X

URL : https://hal.archives-ouvertes.fr/cea-01394777

D. L. 'hôte, R. Tourbot, F. Ladieu, and P. Gadige, Control parameter for the glass transition of glycerol evidenced by the static-field-induced nonlinear response, Physical Review B, vol.78, issue.10, p.104202, 2014.
DOI : 10.1103/PhysRevLett.110.107603

F. Ladieu, C. Brun, and D. L-'hôte, Nonlinear dielectric susceptibilities in supercooled liquids: A toy model, Physical Review B, vol.78, issue.18, p.184207, 2012.
DOI : 10.1103/PhysRevE.61.1211

URL : https://hal.archives-ouvertes.fr/cea-01394728

U. Buchenau, Retardation and flow at the glass transition, Physical Review E, vol.93, issue.3, p.32608, 2016.
DOI : 10.1063/1.3007988

URL : http://arxiv.org/pdf/1511.09052

U. Buchenau, Modeling the nonlinear dielectric response of glass formers, The Journal of Chemical Physics, vol.146, issue.21, p.214503, 2017.
DOI : 10.1063/1.3591375

G. Diezemann, Nonlinear response theory for Markov processes: Simple models for glassy relaxation, Physical Review E, vol.85, issue.5, p.51502, 2012.
DOI : 10.1103/PhysRevLett.88.050603

URL : http://arxiv.org/pdf/1203.1785.pdf

G. Diezemann, Nonlinear response theory for Markov processes. II. Fifth-order response functions, Physical Review E, vol.91, issue.2, p.22150, 2017.
DOI : 10.1063/1.4984929

G. P. Johari, Effects of electric field on the entropy, viscosity, relaxation time, and glass-formation, The Journal of Chemical Physics, vol.157, issue.15, p.154503, 2013.
DOI : 10.1063/1.1577326

G. P. Johari, Effects of electric field on thermodynamics and ordering of a dipolar liquid, The Journal of Chemical Physics, vol.1, issue.16, p.164502, 2016.
DOI : 10.1063/1.4959035

R. Richert and C. A. Angell, Dynamics of glass-forming liquids. V. On the link between molecular dynamics and configurational entropy, The Journal of Chemical Physics, vol.14, issue.21, p.9016, 1998.
DOI : 10.1063/1.432063

G. Tarjus, S. A. Kivelson, Z. Nussinov, and P. Viot, The frustration-based approach of supercooled liquids and the glass transition: a review and critical assessment, Journal of Physics: Condensed Matter, vol.17, issue.50, p.1143, 2005.
DOI : 10.1088/0953-8984/17/50/R01

J. Bouchaud and G. Biroli, On the Adam-Gibbs-Kirkpatrick-Thirumalai-Wolynes scenario for the viscosity increase in glasses, The Journal of Chemical Physics, vol.10, issue.15, p.7347, 2004.
DOI : 10.1209/epl/i2000-00248-2

C. Cammarota, A. Cavagna, G. Gradenigo, T. S. Grigera, and P. Verrocchio, Numerical determination of the exponents controlling the relationship between time, length, and temperature in glass-forming liquids, The Journal of Chemical Physics, vol.131, issue.19, p.194901, 2009.
DOI : 10.1103/PhysRevLett.98.187801

S. Samanta and R. Richert, Dynamics of glass-forming liquids. XVIII. Does entropy control structural relaxation times?, The Journal of Chemical Physics, vol.264, issue.4, p.44504, 2015.
DOI : 10.1063/1.1931647

A. R. Young-gonzales, S. Samanta, and R. Richert, Dynamics of glass-forming liquids. XIX. Rise and decay of field induced anisotropy in the non-linear regime, The Journal of Chemical Physics, vol.264, issue.10, p.104504, 2015.
DOI : 10.1063/1.4918280

B. Riechers, K. Samwer, and R. Richert, Structural recovery in plastic crystals by time-resolved non-linear dielectric spectroscopy, The Journal of Chemical Physics, vol.142, issue.15, p.154504, 2015.
DOI : 10.1140/epjst/e2010-01326-8

R. Richert and S. Weinstein, Nonlinear Dielectric Response and Thermodynamic Heterogeneity in Liquids, Physical Review Letters, vol.9, issue.9, p.95703, 2006.
DOI : 10.1063/1.1147529

S. Weinstein and R. Richert, Nonlinear features in the dielectric behavior of propylene glycol, Physical Review B, vol.43, issue.437, p.64302, 2007.
DOI : 10.1063/1.1750074

L. Wang and R. Richert, Measuring the Configurational Heat Capacity of Liquids, Physical Review Letters, vol.102, issue.18, p.185701, 2007.
DOI : 10.1063/1.2711206

A. Khalife, U. Pathak, and R. Richert, Heating liquid dielectrics by time dependent fields, The European Physical Journal B, vol.67, issue.437, p.429, 2011.
DOI : 10.1046/j.1432-0436.2001.670401.x

C. Brun, C. Crauste-thibierge, F. Ladieu, and D. L-'hôte, Third harmonics nonlinear susceptibility in supercooled liquids: A comparison to the box model, The Journal of Chemical Physics, vol.134, issue.19, p.194507, 2011.
DOI : 10.1093/acprof:oso/9780199691470.003.0005

URL : https://hal.archives-ouvertes.fr/cea-01394751

J. D. Stevenson, J. Schmalian, and P. G. Wolynes, The shapes of cooperatively rearranging regions in glass-forming liquids, Nature Physics, vol.45, issue.4, p.268, 2006.
DOI : 10.1063/1.1680531

S. Samanta and R. Richert, Electrorheological Source of Nonlinear Dielectric Effects in Molecular Glass-Forming Liquids, The Journal of Physical Chemistry B, vol.120, issue.31, p.7737, 2016.
DOI : 10.1021/acs.jpcb.6b04903