D. G. Cahill, P. V. Braun, G. Chen, D. R. Clarke, S. Fan et al., Nanoscale thermal transport. II. 2003?2012, Applied Physics Reviews, vol.1, issue.1, p.011305, 2014.

C. D. Brites, P. P. Lima, N. J. Silva, A. Millán, V. S. Amaral et al., Thermometry at the nanoscale, Nanoscale, vol.4, issue.16, p.4799, 2012.

M. M. Kim, A. Giry, M. Mastiani, G. O. Rodrigues, A. Reis et al., Microscale thermometry: A review, Microelectronic Engineering, vol.148, pp.129-142, 2015.

L. D. Carlos and F. Palacio, Thermometry at the Nanoscale, Thermometry at the Nanoscale: Techniques and Selected Applications, 2015.

M. Mecklenburg, W. A. Hubbard, E. R. White, R. Dhall, S. B. Cronin et al., Nanoscale temperature mapping in operating microelectronic devices, Science, vol.347, issue.6222, pp.629-632, 2015.

S. Sadat, A. Tan, Y. J. Chua, and P. Reddy, Nanoscale Thermometry Using Point Contact Thermocouples, Nano Letters, vol.10, issue.7, pp.2613-2617, 2010.

F. Menges, H. Riel, A. Stemmer, and B. Gotsmann, Quantitative Thermometry of Nanoscale Hot Spots, Nano Letters, vol.12, issue.2, pp.596-601, 2012.

K. Kim, W. Jeong, W. Lee, and P. Reddy, Ultra-High Vacuum Scanning Thermal Microscopy for Nanometer Resolution Quantitative Thermometry, ACS Nano, vol.6, issue.5, pp.4248-4257, 2012.

F. Menges, P. Mensch, H. Schmid, H. Riel, A. Stemmer et al., Temperature mapping of operating nanoscale devices by scanning probe thermometry, Nature Communications, vol.7, issue.1, pp.1-6, 2016.

Y. Zhang, W. Zhu, F. Hui, M. Lanza, T. Borca?tasciuc et al., A Review on Principles and Applications of Scanning Thermal Microscopy (SThM), Advanced Functional Materials, vol.30, issue.18, p.1900892, 2019.

S. B. Ippolito, S. A. Thorne, M. G. Eraslan, B. B. Goldberg, M. S. Ünlü et al., High spatial resolution subsurface thermal emission microscopy, Applied Physics Letters, vol.84, issue.22, pp.4529-4531, 2004.

G. Tessier, M. Bardoux, C. Filloy, C. Boué, and D. Fournier, High resolution thermal imaging inside integrated circuits, Sensor Review, vol.27, issue.4, pp.291-297, 2007.

G. Tessier, M. Bardoux, C. Boué, C. Filloy, and D. Fournier, Back side thermal imaging of integrated circuits at high spatial resolution, Applied Physics Letters, vol.90, issue.17, p.171112, 2007.

M. Farzaneh, K. Maize, D. Lüerßen, J. A. Summers, P. M. Mayer et al., CCD-based thermoreflectance microscopy: principles and applications, Journal of Physics D: Applied Physics, vol.42, issue.14, p.143001, 2009.

G. Baffou, P. Bon, J. Savatier, J. Polleux, M. Zhu et al., Thermal Imaging of Nanostructures by Quantitative Optical Phase Analysis, ACS Nano, vol.6, issue.3, pp.2452-2458, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00729073

M. Santoro, J. Lin, H. Mao, and R. J. Hemley, In situ high P-T Raman spectroscopy and laser heating of carbon dioxide, The Journal of Chemical Physics, vol.121, issue.6, p.2780, 2004.

V. V. Deshpande, S. Hsieh, A. W. Bushmaker, M. Bockrath, and S. B. Cronin, Spatially Resolved Temperature Measurements of Electrically Heated Carbon Nanotubes, Physical Review Letters, vol.102, issue.10, p.105501, 2009.

L. Infratec-infrared, , 2020.

. Microsanj, LAS VEGAS SANDS CORP., a Nevada corporation, Plaintiff, v. UKNOWN REGISTRANTS OF www.wn0000.com, www.wn1111.com, www.wn2222.com, www.wn3333.com, www.wn4444.com, www.wn5555.com, www.wn6666.com, www.wn7777.com, www.wn8888.com, www.wn9999.com, www.112211.com, www.4456888.com, www.4489888.com, www.001148.com, and www.2289888.com, Defendants., Gaming Law Review and Economics, vol.20, issue.10, pp.859-868, 2016.

D. Jaque and F. Vetrone, Luminescence nanothermometry, Nanoscale, vol.4, issue.15, p.4301, 2012.

P. Löw, B. Kim, N. Takama, and C. Bergaud, High?Spatial?Resolution Surface?Temperature Mapping Using Fluorescent Thermometry, Small, vol.4, issue.7, pp.908-914, 2008.

F. Vetrone, R. Naccache, A. Zamarrón, A. Juarranz-de-la-fuente, F. Sanz-rodríguez et al., Temperature Sensing Using Fluorescent Nanothermometers, ACS Nano, vol.4, issue.6, pp.3254-3258, 2010.

S. Yakunin, B. M. Benin, Y. Shynkarenko, O. Nazarenko, M. I. Bodnarchuk et al., High-resolution remote thermometry and thermography using luminescent low-dimensional tin-halide perovskites, Nature Materials, vol.18, issue.8, pp.846-852, 2019.

A. Csendes, V. Székely, and M. Rencz, Thermal mapping with liquid crystal method, Microelectronic Engineering, vol.31, issue.1-4, pp.281-290, 1996.

T. Brintlinger, Y. Qi, K. H. Baloch, D. Goldhaber-gordon, and J. Cumings, Electron Thermal Microscopy, Nano Letters, vol.8, issue.2, pp.582-585, 2008.

G. E. Begtrup, K. G. Ray, B. M. Kessler, T. D. Yuzvinsky, H. Garcia et al., Erratum: Probing Nanoscale Solids at Thermal Extremes [Phys. Rev. Lett.99, 155901 (2007)], Physical Review Letters, vol.99, issue.23, p.155901, 2007.

A. Reguer, F. Bedu, S. Nitsche, D. Chaudanson, B. Detailleur et al., Probing the local temperature by in situ electron microscopy on a heated Si3N4 membrane, Ultramicroscopy, vol.110, issue.1, pp.61-66, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00440715

A. A. Kinkhabwala, M. Staffaroni, O. Suzer, S. Burgos, and B. Stipe, Nanoscale Thermal Mapping of HAMR Heads Using Polymer Imprint Thermal Mapping, IEEE Transactions on Magnetics, vol.52, issue.2, pp.1-4, 2016.

P. Gütlich and H. A. Goodwin, Spin Crossover in Transition Metal Compounds III, 2004.

M. A. Halcrow, Spin-Crossover Materials, Spin-Crossover Materials: Properties and Applications, 2013.
URL : https://hal.archives-ouvertes.fr/hal-02928295

A. Bousseksou, G. Molnár, L. Salmon, and W. Nicolazzi, Molecular spin crossover phenomenon: recent achievements and prospects, Chemical Society Reviews, vol.40, issue.6, p.3313, 2011.

O. Kraieva, C. M. Quintero, I. Suleimanov, E. M. Hernandez, D. Lagrange et al., High Spatial Resolution Imaging of Transient Thermal Events Using Materials with Thermal Memory, Small, vol.12, issue.46, pp.6325-6331, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01413097

L. Salmon, G. Molnár, D. Zitouni, C. Quintero, C. Bergaud et al., A novel approach for fluorescent thermometry and thermal imaging purposes using spin crossover nanoparticles, Journal of Materials Chemistry, vol.20, issue.26, p.5499, 2010.

V. Shalabaeva, S. Rat, M. D. Manrique-juarez, A. Bas, L. Vendier et al., Vacuum deposition of high-quality thin films displaying spin transition near room temperature, Journal of Materials Chemistry C, vol.5, issue.18, pp.4419-4425, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01946383

S. Rat, K. Ridier, L. Vendier, G. Molnár, L. Salmon et al., Solvatomorphism and structural-spin crossover property relationship in bis[hydrotris(1,2,4-triazol-1-yl)borate]iron(ii), CrystEngComm, vol.19, issue.24, pp.3271-3280, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01946392

V. Shalabaeva, M. Mikolasek, M. D. Manrique-juarez, A. Bas, S. Rat et al., Unprecedented Size Effect on the Phase Stability of Molecular Thin Films Displaying a Spin Transition, The Journal of Physical Chemistry C, vol.121, issue.45, pp.25617-25621, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01946384

C. M. Quintero, O. Kraieva, F. Carcenac, D. Lagrange, N. A. Yaremchuk et al., Joule heated metallic microwire devices for sub-microsecond T-jump experiments, Microelectronics Journal, vol.46, issue.12, pp.1167-1174, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01764284

K. Ridier, A. Bas, V. Shalabaeva, W. Nicolazzi, L. Salmon et al., Finite Size Effects on the Switching Dynamics of Spin?Crossover Thin Films Photoexcited by a Femtosecond Laser Pulse, Advanced Materials, vol.31, issue.25, p.1901361, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02161140

G. W. Burr, Phase change memory technology, J. Vac. Sci. Technol. B, vol.28, pp.223-262, 2010.

C. Chluba, W. Ge, R. Lima-de-miranda, J. Strobel, L. Kienle et al., Ultralow-fatigue shape memory alloy films, Science, vol.348, issue.6238, pp.1004-1007, 2015.

J. Jian, A. Chen, Y. Chen, X. Zhang, and H. Wang, Roles of strain and domain boundaries on the phase transition stability of VO2 thin films, Applied Physics Letters, vol.111, issue.15, p.153102, 2017.

Y. Song, X. Chen, V. Dabade, T. W. Shield, and R. D. James, Enhanced reversibility and unusual microstructure of a phase-transforming material, Nature, vol.502, issue.7469, pp.85-88, 2013.

D. Lee, B. Chung, Y. Shi, G. Kim, N. Campbell et al., Isostructural metal-insulator transition in VO2, Science, vol.362, issue.6418, pp.1037-1040, 2018.

M. Sy, F. Varret, K. Boukheddaden, G. Bouchez, J. Marrot et al., Structure-Driven Orientation of the High-Spin-Low-Spin Interface in a Spin-Crossover Single Crystal, Angewandte Chemie International Edition, vol.53, issue.29, pp.7539-7542, 2014.

M. Mikolasek, M. D. Manrique-juarez, H. J. Shepherd, K. Ridier, S. Rat et al., Complete Set of Elastic Moduli of a Spin-Crossover Solid: Spin-State Dependence and Mechanical Actuation, Journal of the American Chemical Society, vol.140, issue.28, pp.8970-8979, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01961781

K. Ridier, Y. Zhang, M. Piedrahita?bello, C. M. Quintero, L. Salmon et al., Heat Capacity and Thermal Damping Properties of Spin?Crossover Molecules: A New Look at an Old Topic, Advanced Materials, vol.32, issue.21, p.2000987, 2020.
URL : https://hal.archives-ouvertes.fr/hal-02570846

K. Ridier, S. Rat, H. J. Shepherd, L. Salmon, W. Nicolazzi et al., Spatiotemporal dynamics of the spin transition in[Fe(HB(tz)3)2]single crystals, Physical Review B, vol.96, issue.13, p.134106, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01946388

V. Shalabaeva, A. Bas, M. Piedrahita?bello, K. Ridier, L. Salmon et al., Direct Visualization of Local Spin Transition Behaviors in Thin Molecular Films by Bimodal AFM, Small, vol.15, issue.47, p.1903892, 2019.

E. M. Hernández, C. M. Quintero, O. Kraieva, C. Thibault, C. Bergaud et al., AFM Imaging of Molecular Spin-State Changes through Quantitative Thermomechanical Measurements, Advanced Materials, vol.26, issue.18, pp.2889-2893, 2014.

M. Irie, T. Fukaminato, K. Matsuda, and S. Kobatake, Photochromism of Diarylethene Molecules and Crystals: Memories, Switches, and Actuators, Chemical Reviews, vol.114, issue.24, pp.12174-12277, 2014.

F. Avilés, O. Ceh, and A. I. Oliva, PHYSICAL PROPERTIES OF AU AND AL THIN FILMS MEASURED BY RESISTIVE HEATING, Surface Review and Letters, vol.12, issue.01, pp.101-106, 2005.