Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces

Complex oxide heterostructures can host two-dimensional electron systems with better properties than bulk materials. Choe et al. show that the combination of the Rashba spin-orbit interaction and Fermi energy at LAO/STO interfaces gives a larger nonreciprocal response than in bulk polar conductors.

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Autores principales: Daeseong Choe, Mi-Jin Jin, Shin-Ik Kim, Hyung-Jin Choi, Junhyeon Jo, Inseon Oh, Jungmin Park, Hosub Jin, Hyun Cheol Koo, Byoung-Chul Min, Seokmin Hong, Hyun-Woo Lee, Seung-Hyub Baek, Jung-Woo Yoo
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/6546388233e24686bed7ad3acb232496
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spelling oai:doaj.org-article:6546388233e24686bed7ad3acb2324962021-12-02T14:38:43ZGate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces10.1038/s41467-019-12466-12041-1723https://doaj.org/article/6546388233e24686bed7ad3acb2324962019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12466-1https://doaj.org/toc/2041-1723Complex oxide heterostructures can host two-dimensional electron systems with better properties than bulk materials. Choe et al. show that the combination of the Rashba spin-orbit interaction and Fermi energy at LAO/STO interfaces gives a larger nonreciprocal response than in bulk polar conductors.Daeseong ChoeMi-Jin JinShin-Ik KimHyung-Jin ChoiJunhyeon JoInseon OhJungmin ParkHosub JinHyun Cheol KooByoung-Chul MinSeokmin HongHyun-Woo LeeSeung-Hyub BaekJung-Woo YooNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Daeseong Choe
Mi-Jin Jin
Shin-Ik Kim
Hyung-Jin Choi
Junhyeon Jo
Inseon Oh
Jungmin Park
Hosub Jin
Hyun Cheol Koo
Byoung-Chul Min
Seokmin Hong
Hyun-Woo Lee
Seung-Hyub Baek
Jung-Woo Yoo
Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
description Complex oxide heterostructures can host two-dimensional electron systems with better properties than bulk materials. Choe et al. show that the combination of the Rashba spin-orbit interaction and Fermi energy at LAO/STO interfaces gives a larger nonreciprocal response than in bulk polar conductors.
format article
author Daeseong Choe
Mi-Jin Jin
Shin-Ik Kim
Hyung-Jin Choi
Junhyeon Jo
Inseon Oh
Jungmin Park
Hosub Jin
Hyun Cheol Koo
Byoung-Chul Min
Seokmin Hong
Hyun-Woo Lee
Seung-Hyub Baek
Jung-Woo Yoo
author_facet Daeseong Choe
Mi-Jin Jin
Shin-Ik Kim
Hyung-Jin Choi
Junhyeon Jo
Inseon Oh
Jungmin Park
Hosub Jin
Hyun Cheol Koo
Byoung-Chul Min
Seokmin Hong
Hyun-Woo Lee
Seung-Hyub Baek
Jung-Woo Yoo
author_sort Daeseong Choe
title Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
title_short Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
title_full Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
title_fullStr Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
title_full_unstemmed Gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
title_sort gate-tunable giant nonreciprocal charge transport in noncentrosymmetric oxide interfaces
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/6546388233e24686bed7ad3acb232496
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