Full Counting Statistics of Electrons through Interaction of the Single Quantum Dot System with the Optical Field

Author:

Liu Weici,Wang Faqiang,Tang Zhilie,Liang Ruisheng

Abstract

In this paper, using the particle-number-resolved master equation, the properties of full counting statistics (FCS) are investigated for a single quantum dot (QD) system interacting with optical fields in the thermal state, Fock state, coherent state, and coherent state with random phase. In these diverse quantum states of optical fields, average tunneling currents have different step shoulder heights at a lower bias voltage with the same light intensity, and a staircase-shaped current can be induced unexpectedly in vacuum state optical field. The characteristics of the Fano factor and skewness in the coherent state differ from those in all of the other cases. For avalanche-like transport at a lower bias voltage, the mechanism is a dynamical channel blockade in a moderate electron–photon interaction regime. There is a pronounced negative differential conductance that results from tuning the phase of the coherent state optical field in a symmetric QD system.

Funder

National Natural Science Foundation of China

Foundation for Distinguished Young Talents in Higher Education of Guangdong, China

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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