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Bibliographic Details
Main Authors: Masdemont, Guillem, Legendre, Julien, Papadakis, Georgia T.
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2602.17313
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author Masdemont, Guillem
Legendre, Julien
Papadakis, Georgia T.
author_facet Masdemont, Guillem
Legendre, Julien
Papadakis, Georgia T.
contents Breaking Kirchhoff's law of thermal radiation yields new opportunities in one-way radiative thermal transport and circuitry. We investigate its consequences in the far-field regime in cylindrical cavities, by employing a specular ray-tracing algorithm. At thermal equilibrium, we show that violation of Kirchhoff's law yields non-vanishing heat rectification coefficients within different sections of the cavity, which can be tuned for perfect rectification and circulation, while internal monochromatic currents vanish due to the intrinsic coupling between emission and absorption at specular surfaces. This constraint is lifted under nonequilibrium conditions, where rotational heat fluxes within the cavity can be precisely controlled by appropriately combining reciprocal and nonreciprocal materials. These findings open new avenues for thermal management and provide design principles for nonreciprocal photonic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2602_17313
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Far-field heat transfer and monochromatic thermal currents in a cylindrical nonreciprocal cavity
Masdemont, Guillem
Legendre, Julien
Papadakis, Georgia T.
Optics
78-10, 78A10
J.2
Breaking Kirchhoff's law of thermal radiation yields new opportunities in one-way radiative thermal transport and circuitry. We investigate its consequences in the far-field regime in cylindrical cavities, by employing a specular ray-tracing algorithm. At thermal equilibrium, we show that violation of Kirchhoff's law yields non-vanishing heat rectification coefficients within different sections of the cavity, which can be tuned for perfect rectification and circulation, while internal monochromatic currents vanish due to the intrinsic coupling between emission and absorption at specular surfaces. This constraint is lifted under nonequilibrium conditions, where rotational heat fluxes within the cavity can be precisely controlled by appropriately combining reciprocal and nonreciprocal materials. These findings open new avenues for thermal management and provide design principles for nonreciprocal photonic devices.
title Far-field heat transfer and monochromatic thermal currents in a cylindrical nonreciprocal cavity
topic Optics
78-10, 78A10
J.2
url https://arxiv.org/abs/2602.17313