Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach

We study the time evolution of the survival probability and the spin polarization of a dissipative nondegenerate two-level system in the presence of a magnetic field in the Faraday configuration. We apply the Extended Gaussian Orthogonal Ensemble approach to model the stochastic system-environment i...

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Main Author: P. Pereyra
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Advances in Condensed Matter Physics
Online Access:http://dx.doi.org/10.1155/2019/2030573
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author P. Pereyra
author_facet P. Pereyra
author_sort P. Pereyra
collection DOAJ
description We study the time evolution of the survival probability and the spin polarization of a dissipative nondegenerate two-level system in the presence of a magnetic field in the Faraday configuration. We apply the Extended Gaussian Orthogonal Ensemble approach to model the stochastic system-environment interaction and calculate the survival and spin polarization to first and second order of the interaction picture. We present also the time evolution of the thermal average of these quantities as functions of the temperature, the magnetic field, and the energy-levels density, for ρ(ϵ)∝ϵs, in the subohmic, ohmic, and superohmic dissipation forms. We show that the behavior of the spin polarization calculated here agrees rather well with the time evolution of spin polarization observed and calculated, recently, for the electron-nucleus dynamics of Ga centers in dilute (Ga,N)As semiconductors.
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institution Kabale University
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series Advances in Condensed Matter Physics
spelling doaj-art-0fdbddf9328d4745a23ff155feb2c2ce2025-02-03T06:10:51ZengWileyAdvances in Condensed Matter Physics1687-81081687-81242019-01-01201910.1155/2019/20305732030573Spin Polarization Oscillations and Coherence Time in the Random Interaction ApproachP. Pereyra0Física Teórica y Materia Condensada, UAM-Azcapotzalco, Avenida San Pablo 180, Código Postal O2200 México Distrito Federal, MexicoWe study the time evolution of the survival probability and the spin polarization of a dissipative nondegenerate two-level system in the presence of a magnetic field in the Faraday configuration. We apply the Extended Gaussian Orthogonal Ensemble approach to model the stochastic system-environment interaction and calculate the survival and spin polarization to first and second order of the interaction picture. We present also the time evolution of the thermal average of these quantities as functions of the temperature, the magnetic field, and the energy-levels density, for ρ(ϵ)∝ϵs, in the subohmic, ohmic, and superohmic dissipation forms. We show that the behavior of the spin polarization calculated here agrees rather well with the time evolution of spin polarization observed and calculated, recently, for the electron-nucleus dynamics of Ga centers in dilute (Ga,N)As semiconductors.http://dx.doi.org/10.1155/2019/2030573
spellingShingle P. Pereyra
Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach
Advances in Condensed Matter Physics
title Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach
title_full Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach
title_fullStr Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach
title_full_unstemmed Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach
title_short Spin Polarization Oscillations and Coherence Time in the Random Interaction Approach
title_sort spin polarization oscillations and coherence time in the random interaction approach
url http://dx.doi.org/10.1155/2019/2030573
work_keys_str_mv AT ppereyra spinpolarizationoscillationsandcoherencetimeintherandominteractionapproach