High-efficiency energy harvesting based on nonlinear Hall rectifier

Fuente: arXiv
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Main Authors: Onishi, Yugo, Fu, Liang
Format: Preprint
Published: 2022
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author Onishi, Yugo
Fu, Liang
author_facet Onishi, Yugo
Fu, Liang
contents Noncentrosymmetric quantum materials can convert AC input current into DC transverse current through the nonlinear Hall effect at zero magnetic field. We analyze the AC-DC power conversion efficiency of such ``Hall rectifier'' and suggest its application in wireless charging and energy harvesting. Our key observation is that the development of Hall voltage results in a change of longitudinal resistance, resulting in a violation of Ohm's law due to the nonlinear Hall effect. This feedback mechanism balances the input power and the output power and hence is crucial to understanding the power transfer from source to load. We derive a general expression for the power conversion efficiency in terms of material parameters, external load resistance, and input power. As the Hall current is perpendicular to the electric field and does not generate Joule heating by itself, we obtain high power conversion efficiency when the Hall angle (which increases with the input power) is large and the load resistance is optimized. Promising materials for high-efficiency Hall rectifiers are also discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2211_17219
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle High-efficiency energy harvesting based on nonlinear Hall rectifier
Onishi, Yugo
Fu, Liang
Mesoscale and Nanoscale Physics
Materials Science
Noncentrosymmetric quantum materials can convert AC input current into DC transverse current through the nonlinear Hall effect at zero magnetic field. We analyze the AC-DC power conversion efficiency of such ``Hall rectifier'' and suggest its application in wireless charging and energy harvesting. Our key observation is that the development of Hall voltage results in a change of longitudinal resistance, resulting in a violation of Ohm's law due to the nonlinear Hall effect. This feedback mechanism balances the input power and the output power and hence is crucial to understanding the power transfer from source to load. We derive a general expression for the power conversion efficiency in terms of material parameters, external load resistance, and input power. As the Hall current is perpendicular to the electric field and does not generate Joule heating by itself, we obtain high power conversion efficiency when the Hall angle (which increases with the input power) is large and the load resistance is optimized. Promising materials for high-efficiency Hall rectifiers are also discussed.
title High-efficiency energy harvesting based on nonlinear Hall rectifier
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2211.17219