Effects of Magnetic Field on the Coherence Time of a Parabolic Quantum Dot Qubit

被引:7
作者
Yong Sun
Zhao-Hua Ding
Jing-Lin Xiao
机构
[1] Inner Mongolia National University,Institute of Condensed Matter Physics
来源
Journal of Low Temperature Physics | 2014年 / 177卷
关键词
Parabolic quantum dot; Qubit; Magnetic field; Coherence time; Pekar type variational method;
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摘要
We obtain the eigenenergies and eigenfunctions (EE) of the ground and first excited states of an electron strongly coupled to LO-phonon in a parabolic quantum dot. The effect of an applied magnetic field is considered by using variational method of Pekar type. This system may be regarded as a two-level qubit. Spontaneous phonon emission arouses the qubit’s decoherence. Relations between the coherence time (CT) and the magnetic field, the effective confinement length (ECL) and the polaron radius (PR) are numerically calculated. It is found that the CT is an increasing function of the ECL, whereas it is a decreasing one of the cyclotron frequency and PR. We can extend the CT by changing these parameters in the correlated quantum functional devices.
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页码:151 / 156
页数:5
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