Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1856436 | Annals of Physics | 2015 | 10 Pages |
Abstract
We study theoretically the full counting statistics of electron transport through a quantum dot weakly coupled to two ferromagnetic leads, in which an effective nuclear-spin magnetic field originating from the configuration of nuclear spins is considered. We demonstrate that the quantum coherence between the two singly-occupied eigenstates and the spin polarization of two ferromagnetic leads play an important role in the formation of super-Poissonian noise. In particular, the orientation and magnitude of the effective field have a significant influence on the variations of the values of high-order cumulants, and the variations of the skewness and kurtosis values are more sensitive to the orientation and magnitude of the effective field than the shot noise. Thus, the high-order cumulants of transport current can be used to qualitatively extract information on the orientation and magnitude of the effective nuclear-spin magnetic field in a single quantum dot.
Related Topics
Physical Sciences and Engineering
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Authors
Hai-Bin Xue, Yi-Hang Nie, Jingzhe Chen, Wei Ren,