The temperature dependence on the coherence time of a quantum pseudodot qubit

Author:

Qiu Wei1,Miao Xiu-Juan1,Han Shuang1,Zhang Wei1,Ma Xin-Jun1,Sun Yong1,Xiao Jing-Lin1

Affiliation:

1. Institution of Condensed Matter Physics, Inner Mongolia MinZu University, Tongliao 028043 P. R. China

Abstract

In this work, the energies and eigenfunctions of ground state and first-excited states (GFES) of a strongly coupled polaron in a quantum pseudo-dot (QPD) were studied by using variational method of Pekar type (VMPT). A single qubit can be realized in this two-level quantum system. Then, we calculated the coherence time of a QPD qubit by employing the Fermi Golden Rule. The temperature effects on the coherence time are taken into account by using the quantum statistics theory (QST) and self-consistent calculation method. According to the obtained results, it is found that the coherence time increases with decreasing temperature. Also, this time is a decaying function of the chemical potential of the two-dimensional electron gas and the zero point of the PHP.

Funder

National Natural Science Foundation of China

Doctor Research Start-up Fund of Inner Mongolia Minzu University

Publisher

World Scientific Pub Co Pte Ltd

Subject

Physics and Astronomy (miscellaneous)

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