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jérémie drevillon

14
Documents
Identifiants chercheurs

Présentation

I work as a researcher in the TNR axis (Thermal Nanoscale and Radiation) Institute Pprime Poitiers. This axis is led by Younès Ezzahri (MCF, HDR). I have great expertise in the control of thermal radiation with micro-nanostructured materials. I obtained my PhD from the University of Nantes in December 2007. I was hired as associate Porfessor of the University of Poitiers in September 2008. My work focuses on the modeling and optimization of thermal radiation of micro / nanostructured materials as well as the experimental characterization of their radiative properties. This research activity targets different applications for converting or controlling thermal radiation. In particular, I have developed and optimized spectrally coherent thermal sources that allow better control of thermal radiation to improve the efficiency of Thermo-Photovoltaic (TPV) systems. This design of radiative thermal sources, using optimization tools such as genetic algorithms or particle swarms, has made it possible to highlight the possibility of significantly increasing the efficiency of TPV systems. This ability to modify and control the spectral nature of the thermal radiation of nano / micro structured objects has also made it possible to study the temperature behavior of micrometric gratings etched on polar materials supporting surface waves, which can generate coherent thermal sources ( Silicon Carbide for example). Another area of ​​research concerns the optimization of structures associating stacks of thin layers with surface gratings for passive radiative cooling applications. I obtained ANR JCJC funding on this subject in July 2017. The other important theme of my research is the design of radiative diode and transistor. Thermal rectification is an asymmetry of the heat flux exchanged when the temperature gradient between two interacting thermal reservoirs is reversed. A non-zero rectification means that an inversion of the thermal gradient induces, in addition to the reversal of the direction of the heat flow, a variation of the magnitude of the exchanged flow. The realization of systems with this property has allowed the development of thermal logic circuits in the same way that non-linear electronic components, the diode for example, have marked the emergence of modern electronics.

Publications

jose-ordonez-miranda

VO 2 Substrate Effect on the Thermal Rectification of a Far-Field Radiative Diode

I.Y. Forero-Sandoval , J.A. Chan-Espinoza , J. Ordonez-Miranda , J.J. Alvarado-Gil , F. Dumas-Bouchiat
Physical Review Applied, 2020, 14 (3), pp.034023. ⟨10.1103/PhysRevApplied.14.034023⟩
Article dans une revue hal-04135185v1
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VO 2 Substrate Effect on the Thermal Rectification of a Far-Field Radiative Diode

I y Forero-Sandoval , J A Chan-Espinoza , Jose Ordonez-Miranda , J J Alvarado-Gil , Frédéric Dumas-Bouchiat
Physical Review Applied, 2020, 14, ⟨10.1103/physrevapplied.14.034023⟩
Article dans une revue hal-03017598v1

Periodic amplification of radiative heat transfer

Jose Ordonez-Miranda , Karl Joulain , Younes Ezzahri , Jérémie Drevillon , J. Alvarado-Gil
Journal of Applied Physics, 2019, 125 (6), pp.064302. ⟨10.1063/1.5084781⟩
Article dans une revue hal-02283092v1
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Radiative Thermal Memristor

Jose Ordonez-Miranda , Younes Ezzahri , Jose Tiburcio-Moreno , Karl Joulain , Jérémie Drevillon
Physical Review Letters, 2019, 123 (2), ⟨10.1103/PhysRevLett.123.025901⟩
Article dans une revue hal-02332163v1
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Measurement of the hysteretic thermal properties of W-doped and undoped nanocrystalline powders of VO2

C. Gomez-Heredia , J. Ramirez-Rincon , D. Bhardwaj , P. Rajasekar , I. Tadeo
Scientific Reports, 2019, 9 (1), ⟨10.1038/s41598-019-51162-4⟩
Article dans une revue hal-02322316v1

Conductive thermal diode based on the thermal hysteresis of VO 2 and nitinol

Jose Ordonez-Miranda , James Hill , Karl Joulain , Younes Ezzahri , Jérémie Drevillon
Journal of Applied Physics, 2018, 123 (8), pp.085102. ⟨10.1063/1.5019854⟩
Article dans une revue hal-02308458v1
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VO2-based radiative thermal transistor with a semi-transparent base

Hugo Prod 'Homme , Jose Ordonez-Miranda , Younes Ezzahri , Jérémie Drevillon , Karl Joulain
Journal of Quantitative Spectroscopy and Radiative Transfer, 2018, 210, pp.52-61. ⟨10.1016/j.jqsrt.2018.02.005⟩
Article dans une revue hal-01617764v1

Modeling of the electrical conductivity, thermal conductivity, and specific heat capacity of VO 2

Jose Ordonez-Miranda , Younes Ezzahri , Karl Joulain , Jérémie Drevillon , J. Alvarado-Gil
Physical Review B: Condensed Matter and Materials Physics (1998-2015), 2018, 98 (7), ⟨10.1103/PhysRevB.98.075144⟩
Article dans une revue hal-02311264v1

Photonic thermal diode based on superconductors

Jose Ordonez-Miranda , Karl Joulain , Domingos de Sousa Meneses , Younès Ezzahri , Jérémie Drevillon
Journal of Applied Physics, 2017, 122 (9), pp.093105. ⟨10.1063/1.4991516⟩
Article dans une revue hal-04134069v1

Polaritonic figure of merit of plane structures

Jose Ordonez-Miranda , Younes Ezzahri , Laurent Tranchant , Jérémie Drevillon , Sergei Gluchko
Optics Express, 2017, 25 (21), ⟨10.1364/OE.25.025938⟩
Article dans une revue hal-01631294v1

Transistorlike Device for Heating and Cooling Based on the Thermal Hysteresis of VO 2

Jose Ordonez-Miranda , Younès Ezzahri , Jérémie Drevillon , Karl Joulain
Physical Review Applied, 2016, 6 (5), pp.054003. ⟨10.1103/PhysRevApplied.6.054003⟩
Article dans une revue hal-03675819v1
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Quantum thermal transistor

Karl Joulain , Jérémie Drevillon , Younes Ezzahri , Jose Ordonez-Miranda
Physical Review Letters, 2016, 116, pp.200601. ⟨10.1103/PhysRevLett.116.200601⟩
Article dans une revue hal-01272554v3

Thermal energy transport in a surface phonon-polariton crystal

Jose Ordonez-Miranda , Laurent Tranchant , Younes Ezzahri , Jérémie Drevillon , Karl Joulain
Physical Review B: Condensed Matter and Materials Physics (1998-2015), 2016, 93, pp.3. ⟨10.1103/physrevb.93.035428⟩
Article dans une revue hal-01336738v1