Generation of pure, spin polarized, and unpolarized charge currents at the few cycle limit of circularly polarized light

Fuente: arXiv
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Main Authors: Gill, Deepika, Sharma, Sangeeta, Shallcross, Sam
Format: Preprint
Published: 2025
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author Gill, Deepika
Sharma, Sangeeta
Shallcross, Sam
author_facet Gill, Deepika
Sharma, Sangeeta
Shallcross, Sam
contents In certain members of the transition metal dichalcogenide (TMDC) family, laser pulses of oppositely circularly polarized light excite electrons of opposite spin. Here we show that in the few cycle limit such pulses generate not only a spin density excitation, but also a spin current excitation. Employing the example of the TMDC WSe$_2$ we show that pure spin currents, the flow of spin in the absence of net charge flow, 100% spin polarized currents, and charge currents are all accessible and controllable by tuning the amplitude of ~ 5 femtosecond gap tuned light pulses. Underpinning this physics is a symmetry lowering of the valley charge excitation from C3 at long duration to C2 in the few cycle limit, imbuing the excitation with net current. Our results both highlight the emergence of a rich light-spin current coupling at ultrafast times in the TMDC family, as well presenting a route to the all-optical generation of pure spin currents.
format Preprint
id arxiv_https___arxiv_org_abs_2509_18432
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Generation of pure, spin polarized, and unpolarized charge currents at the few cycle limit of circularly polarized light
Gill, Deepika
Sharma, Sangeeta
Shallcross, Sam
Mesoscale and Nanoscale Physics
Materials Science
In certain members of the transition metal dichalcogenide (TMDC) family, laser pulses of oppositely circularly polarized light excite electrons of opposite spin. Here we show that in the few cycle limit such pulses generate not only a spin density excitation, but also a spin current excitation. Employing the example of the TMDC WSe$_2$ we show that pure spin currents, the flow of spin in the absence of net charge flow, 100% spin polarized currents, and charge currents are all accessible and controllable by tuning the amplitude of ~ 5 femtosecond gap tuned light pulses. Underpinning this physics is a symmetry lowering of the valley charge excitation from C3 at long duration to C2 in the few cycle limit, imbuing the excitation with net current. Our results both highlight the emergence of a rich light-spin current coupling at ultrafast times in the TMDC family, as well presenting a route to the all-optical generation of pure spin currents.
title Generation of pure, spin polarized, and unpolarized charge currents at the few cycle limit of circularly polarized light
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2509.18432