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Photon-assisted electronic transport through an asymmetrically coupled triple-quantum dot interferometer

J. Bai, L. Li$^1$, Z. He, S. Ye, W. Sun

Moscow University Physics Bulletin 2018. 73. N 5. P. 486

  • Article
Annotation

We present theoretically the quantum electronic transport through an interferometer asymmetrically coupled with triple quantum dots. Using the Keldysh non-equilibrium Green's function method, the photon-assisted transport properties through the asymmetric quantum system are numerically analyzed. The sidebands of the photon-assisted tunneling process appear when driven by the time-modulated field. The average current spectra are simulated as a function of quantum dot energy to understand the roles of side-coupling strength and time-modulated field in sideband effect and electron tunneling. This is helpful in future design of the basic structures required for quantum computation applications.

Received: 2018 February 3
Approved: 2018 June 28
PACS:
73.63.-b Electronic transport in nanoscale materials and structures
73.23.-b Electronic transport in mesoscopic systems
05.60.Gg Quantum transport
Authors
J. Bai, L. Li$^1$, Z. He, S. Ye, W. Sun
$^1$Harbin Engineering University
Issue 5, 2018

Moscow University Physics Bulletin

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