Line Broadening and Decoherence of Electron Spins in Phosphorus-Doped Silicon Due to Environmental 29^Si Nuclear Spins
arXiv:cond-mat/0512404 · doi:10.1103/PhysRevB.82.121201
Abstract
Phosphorus-doped silicon single crystals with 0.19 % <= f <= 99.2 %, where f is the concentration of 29^Si isotopes, are measured at 8 K using a pulsed electron spin resonance technique, thereby the effect of environmental 29^Si nuclear spins on the donor electron spin is systematically studied. The linewidth as a function of f shows a good agreement with theoretical analysis. We also report the phase memory time T_M of the donor electron spin dependent on both f and the crystal axis relative to the external magnetic field.
5 pages, 4 figures
References in corpus (9)
- Solid state quantum memory using the 31P nuclear spin
- Quantum theory for electron spin decoherence induced by nuclear spin dynamics in semiconductor quantum computer architectures: Spectral diffusion of localized electron spins in the nuclear solid-state environment
- Coherence of single spins coupled to a nuclear spin bath of varying density
- Electron spin decoherence of single Nitrogen-Vacancy defects in diamond
- Quantum theory of spectral diffusion induced electron spin decoherence
- Coherence of Spin Qubits in Silicon
- Electron spin coherence and electron nuclear double resonance of Bi donors in natural Si
- Electron spin phase relaxation of phosphorus donors in nuclear spin enriched silicon
- Decoherence induced by anisotropic hyperfine interaction in Si spin qubits
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