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January 30, 2006Physical Review Letters288 citationsOpen Access

Coherent Single Electron Spin Control in a Slanting Zeeman Field

YTY. TokuraWWWilfred G. van der WielTOToshiaki Obata

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Abstract

We consider a single electron in a 1D quantum dot with a static slanting Zeeman field. By combining the spin and orbital degrees of freedom of the electron, an effective quantum two-level (qubit) system is defined. This pseudospin can be coherently manipulated by the voltage applied to the gate electrodes, without the need for an external time-dependent magnetic field or spin-orbit coupling. Single-qubit rotations and the controlled-NOT operation can be realized. We estimated the relaxation (T1) and coherence (T2) times and the (tunable) quality factor. This scheme implies important experimental advantages for single electron spin control.

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Tokura et al. (2006) studied this question.

synapsesocial.com/papers/6a20aefefb15484991e51b22https://doi.org/10.1103/physrevlett.96.047202
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