Effect of temperature on the single-particle ground-state energy of a polar quantum dot with Gaussian confinement
Effect of temperature on the single-particle ground-state energy of a polar quantum dot with Gaussian confinement
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Date
2016-05-23
Authors
Luhluh Jahan, K.
Chatterjee, Ashok
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Abstract
The temperature and size dependence of the ground-state energy of a polaron in a Gaussian quantum dot have been investigated by using a variational technique. It is found that the ground-state energy increases with increasing temperature and decreases with the size of the quantum dot. Also, it is found that the ground-state energy is larger for a three-dimensional quantum dot as compared to a two-dimensional dot.
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Keywords
Gaussian quantum dot,
Ground-state energy,
LLPH transformation,
Polaronic effect,
Temperature effect
Citation
AIP Conference Proceedings. v.1731