Data for: Temperature effects on bound polaron in triangular quantum dot qubit subjected to an electromagnetic field

Published: 14 Oct 2017 | Version 1 | DOI: 10.17632/rt7bhybm37.1

Description of this data

Temperature effects on polaron in triangular quantum dot qubit subjected to an electromagnetic field are studied.
We derive the numerical results and formulate the derivative relationships of the ground and first
excited state energies, the electron probability density and the electron oscillating period in the superposition state of
the ground state and the first-excited state with the temperature, the cyclotron frequency, the electron-phonon coupling
constant, the electric field strength, the confinement strength and the Coulomb impurity potential, respectively.

Experiment data files

This data is associated with the following publication:

Temperature effects on bound polaron in triangular quantum dot qubit subjected to an electromagnetic field

Published in: Superlattices and Microstructures

Latest version

  • Version 1

    2017-10-14

    Published: 2017-10-14

    DOI: 10.17632/rt7bhybm37.1

    Cite this dataset

    Chen, Ying-Jie; Song, Hai-Tao; Xiao, Jing-Lin (2017), “Data for: Temperature effects on bound polaron in triangular quantum dot qubit subjected to an electromagnetic field”, Mendeley Data, v1 http://dx.doi.org/10.17632/rt7bhybm37.1

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Condensed Matter Physics

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