Spin flip locking by the tunneling and relaxation in a driven double quantum dot with spin-orbit coupling

Fuente: arXiv
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Autori principali: Khomitsky, D. V., Bastrakova, M. V., Pashin, D. S.
Natura: Preprint
Pubblicazione: 2024
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author Khomitsky, D. V.
Bastrakova, M. V.
Pashin, D. S.
author_facet Khomitsky, D. V.
Bastrakova, M. V.
Pashin, D. S.
contents Coupled spin evolution and tunneling together with the relaxation and decoherence effects are studied for the double quantum dot formed in a semiconductor nanowire and driven by the periodic electric field. Such system represents a model of the spin and charge qubits interacting via the strong spin-orbit coupling. It is found that at certain regimes the combination of fast relaxation in the coordinate channel with the slower relaxation in the spin channel leads to the promising combination of fast spin manipulation and slow spin relaxation, locking the flipped spin in an excited state in one of the dots for a sufficiently long time. The predicted effect is maintained for a wide range of the relaxation times and the driving amplitude both for the coordinate and the spin channels and is also observed on higher subharmonic which requires lower driving frequencies.
format Preprint
id arxiv_https___arxiv_org_abs_2411_17843
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Spin flip locking by the tunneling and relaxation in a driven double quantum dot with spin-orbit coupling
Khomitsky, D. V.
Bastrakova, M. V.
Pashin, D. S.
Mesoscale and Nanoscale Physics
Quantum Physics
Coupled spin evolution and tunneling together with the relaxation and decoherence effects are studied for the double quantum dot formed in a semiconductor nanowire and driven by the periodic electric field. Such system represents a model of the spin and charge qubits interacting via the strong spin-orbit coupling. It is found that at certain regimes the combination of fast relaxation in the coordinate channel with the slower relaxation in the spin channel leads to the promising combination of fast spin manipulation and slow spin relaxation, locking the flipped spin in an excited state in one of the dots for a sufficiently long time. The predicted effect is maintained for a wide range of the relaxation times and the driving amplitude both for the coordinate and the spin channels and is also observed on higher subharmonic which requires lower driving frequencies.
title Spin flip locking by the tunneling and relaxation in a driven double quantum dot with spin-orbit coupling
topic Mesoscale and Nanoscale Physics
Quantum Physics
url https://arxiv.org/abs/2411.17843