Universal power law decay of spin polarization in double quantum dot
arXiv:1905.07305 · doi:10.1103/PhysRevB.100.075409
Abstract
We study the spin dynamics and spin noise in a double quantum dot taking into account the interplay between hopping, exchange interaction and the hyperfine interaction. At short time scales the spin relaxation is governed by the spin dephasing in the random nuclear fields. At long time scales the spin polarization obeys universal power law independent of the relation between all the parameters of the system. This effect is related to the competition between the spin blockade effect and the hyperfine interaction. The spin noise spectrum of the system universally diverges as at low frequencies.
11 pages, 4 figures
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- Nonmonotonic buildup of spin-singlet correlations in a double quantum dot
- Spin qubit shuttling between coupled quantum dots with inhomogeneous Landé g-tensors