Electric Field Modulation of Spin Transport

Fuente: arXiv
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Bibliographic Details
Main Authors: Zucchetti, Carlo, Marchionni, Adele, Bollani, Monica, Ciccacci, Franco, Finazzi, Marco, Bottegoni, Federico
Format: Preprint
Published: 2021
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_version_ 1866910492314828800
author Zucchetti, Carlo
Marchionni, Adele
Bollani, Monica
Ciccacci, Franco
Finazzi, Marco
Bottegoni, Federico
author_facet Zucchetti, Carlo
Marchionni, Adele
Bollani, Monica
Ciccacci, Franco
Finazzi, Marco
Bottegoni, Federico
contents The finite spin lifetime in solids is often considered a major hindrance for the development of spintronic devices, which typically require cryogenic temperatures to mitigate this phenomenon. In this work we show that this feature can instead be exploited to realize a scheme where spin transport is modulated at room temperature by a modest electric field. A field directed antiparallel (parallel) to the spin-diffusion velocity can in fact largely increase (decrease) the spin-transport length compared with the zero field case. We find that applying an electric field E = 24 V/cm along a 40 mm-long path in germanium results in about one order of magnitude modulation of the spin-polarized electrons entering in the detector. The present work demonstrates that electric fields can be exploited for guiding spins over macroscopic distances and for realizing fast, room temperature modulation of spin accumulation.
format Preprint
id arxiv_https___arxiv_org_abs_2107_01973
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Electric Field Modulation of Spin Transport
Zucchetti, Carlo
Marchionni, Adele
Bollani, Monica
Ciccacci, Franco
Finazzi, Marco
Bottegoni, Federico
Materials Science
The finite spin lifetime in solids is often considered a major hindrance for the development of spintronic devices, which typically require cryogenic temperatures to mitigate this phenomenon. In this work we show that this feature can instead be exploited to realize a scheme where spin transport is modulated at room temperature by a modest electric field. A field directed antiparallel (parallel) to the spin-diffusion velocity can in fact largely increase (decrease) the spin-transport length compared with the zero field case. We find that applying an electric field E = 24 V/cm along a 40 mm-long path in germanium results in about one order of magnitude modulation of the spin-polarized electrons entering in the detector. The present work demonstrates that electric fields can be exploited for guiding spins over macroscopic distances and for realizing fast, room temperature modulation of spin accumulation.
title Electric Field Modulation of Spin Transport
topic Materials Science
url https://arxiv.org/abs/2107.01973