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- W4293403462 abstract "Thermal properties of the tuned quantum dot/ring systems have been analytically investigated with and without the impurity effect. • A tuned quantum dot/ring is considered and its thermal properties are obtained. • Thermal properties are analytically calculated with and without the impurity effect. • The Gibbs free energy has higher values with the impurity term. • The thermal functions show the peak structure under the impurity effect. In this work, the thermal functions of tuned quantum dot/ring systems have been theoretically studied under an external magnetic field. To this end, the Schrödinger equation is analytically solved without and with the impurity effect. The heat capacity, free energy, entropy, mean energy, and Gibbs free energy of the tuned quantum dot/ring system with and without the impurity effect have been calculated calculated. We found that the presence of the impurity effect causes a peak structure in the specific heat, entropy, and mean energy of the system. At high temperatures, the Gibbs free energy with the impurity effect has higher values than without it the impurity. It is also deduced that the impurity effect has a key role in the thermal functions of the system." @default.
- W4293403462 created "2022-08-28" @default.
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- W4293403462 date "2022-11-01" @default.
- W4293403462 modified "2023-10-18" @default.
- W4293403462 title "Impurity effect on thermal properties of tuned quantum dot/ring systems" @default.
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- W4293403462 doi "https://doi.org/10.1016/j.cplett.2022.140000" @default.
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