Nonreciprocity in transmission mode with planar structures for arbitrarily polarized light

Fuente: arXiv
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Main Authors: Picardi, Michela F., Moerbeek, Vera I., Pascale, Mariano, Papadakis, Georgia
Format: Preprint
Published: 2024
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author Picardi, Michela F.
Moerbeek, Vera I.
Pascale, Mariano
Papadakis, Georgia
author_facet Picardi, Michela F.
Moerbeek, Vera I.
Pascale, Mariano
Papadakis, Georgia
contents Approaching thermodynamic limits in light harvesting requires enabling nonreciprocal thermal emission. The majority of previously reported nonreciprocal thermal emitters operate in reflection mode, following original proposals by M. Green and others. In these proposals, cascaded nonreciprocal junctions that re-direct each junction's emission towards a subsequent one are employed for efficient light-harvesting. Recently, simplified concepts have been proposed in solar photovoltaics and thermophotovoltaics that leverage the concept of tandem junctions to approach thermodynamic limits. In these simplified scenarios, polarization-independent nonreciprocal response in transmission mode is required. We propose a pattern-free heterostructure that enables such functionality, using a magneto-optical material embedded between two dissimilar dielectric layers.
format Preprint
id arxiv_https___arxiv_org_abs_2405_06066
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Nonreciprocity in transmission mode with planar structures for arbitrarily polarized light
Picardi, Michela F.
Moerbeek, Vera I.
Pascale, Mariano
Papadakis, Georgia
Optics
Applied Physics
Approaching thermodynamic limits in light harvesting requires enabling nonreciprocal thermal emission. The majority of previously reported nonreciprocal thermal emitters operate in reflection mode, following original proposals by M. Green and others. In these proposals, cascaded nonreciprocal junctions that re-direct each junction's emission towards a subsequent one are employed for efficient light-harvesting. Recently, simplified concepts have been proposed in solar photovoltaics and thermophotovoltaics that leverage the concept of tandem junctions to approach thermodynamic limits. In these simplified scenarios, polarization-independent nonreciprocal response in transmission mode is required. We propose a pattern-free heterostructure that enables such functionality, using a magneto-optical material embedded between two dissimilar dielectric layers.
title Nonreciprocity in transmission mode with planar structures for arbitrarily polarized light
topic Optics
Applied Physics
url https://arxiv.org/abs/2405.06066