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Effect of Magnetic Field on Internal Energy and Entropy of a Parabolic Cylindrical Quantum Dot
Authors:R. Khordad  M.A. Sadeghzadeh  A. Mohamadian Jahan-abad
Affiliation:1. Department of Physics, College of Sciences, Yasouj University, Yasouj 75914-353, Iran;2. Department of Physics, College of Sciences, Yazd University, Yazd, Iran
Abstract:In the present work, the entropy and internal energy of a GaAs cylindrical quantum dot in the presence of an applied magnetic field is studied. For this purpose, the Tsallis formalism is applied to obtain internal energy and entropy. It is found that entropy and internal energy are continuous function and they are zero at special temperatures. Entropy maximum increases with increasing dot radius. Internal energy increases by increasing magnetic field.
Keywords:quantum dot  entropy  magnetic field  internal energy
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