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Thermal photonics with broken symmetries
Nanophotonic engineering provides an effective platform to manipulate thermal emission on-
demand, enabling unprecedented heat management superior to conventional bulk …
demand, enabling unprecedented heat management superior to conventional bulk …
Optical sensing by metamaterials and metasurfaces: from physics to biomolecule detection
Metasurfaces are planar or 2D forms of metamaterials made up of arrays of antennas with a
subwavelength thickness. They have been rapidly developed in the recent years due to their …
subwavelength thickness. They have been rapidly developed in the recent years due to their …
Thermo‐plasmonics: using metallic nanostructures as nano‐sources of heat
Recent years have seen a growing interest in using metal nanostructures to control
temperature on the nanoscale. Under illumination at its plasmonic resonance, a metal …
temperature on the nanoscale. Under illumination at its plasmonic resonance, a metal …
[HTML][HTML] Near-field radiative thermal transport: From theory to experiment
Radiative thermal transport via the fluctuating electromagnetic near-field has recently
attracted increasing attention due to its fundamental importance and its impact on a range of …
attracted increasing attention due to its fundamental importance and its impact on a range of …
Surface electromagnetic waves thermally excited: Radiative heat transfer, coherence properties and Casimir forces revisited in the near field
We review in this article the influence of surface waves on the thermally excited
electromagnetic field. We study in particular the field emitted at subwavelength distances of …
electromagnetic field. We study in particular the field emitted at subwavelength distances of …
Light emission by nonequilibrium bodies: local Kirchhoff law
The goal of this paper is to introduce a local form of Kirchhoff law to model light emission by
nonequilibrium bodies. While absorption by a finite-size body is usually described using the …
nonequilibrium bodies. While absorption by a finite-size body is usually described using the …
Wide-angle perfect absorber/thermal emitter in the terahertz regime
We show that a perfect absorber/thermal emitter exhibiting an absorption peak of 99.9% can
be achieved in metallic nanostructures that can be easily fabricated. The very high …
be achieved in metallic nanostructures that can be easily fabricated. The very high …
Measurements of the Q2-dependence of the proton and neutron spin structure functions g1p and g1n
The structure functions g1p and g1n have been measured over the range 0.014< x< 0.9 and
1< Q2< 40 GeV2 using deep-inelastic scattering of 48 GeV longitudinally polarized electrons …
1< Q2< 40 GeV2 using deep-inelastic scattering of 48 GeV longitudinally polarized electrons …
Neural-adjoint method for the inverse design of all-dielectric metasurfaces
All-dielectric metasurfaces exhibit exotic electromagnetic responses, similar to those
obtained with metal-based metamaterials. Research in all-dielectric metasurfaces currently …
obtained with metal-based metamaterials. Research in all-dielectric metasurfaces currently …
Epsilon-near-zero mode for active optoelectronic devices
The electromagnetic modes of a GaAs quantum well between two AlGaAs barriers are
studied. At the longitudinal optical phonon frequency, the system supports a phonon …
studied. At the longitudinal optical phonon frequency, the system supports a phonon …