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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Low temperature behavior of entropy and specific heat of a three dimensional quantum wire: Shannon and Tsallis entropies
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Low temperature behavior of entropy and specific heat of a three dimensional quantum wire: Shannon and Tsallis entropies

机译:三维量子线的熵和特定热量的低温行为:Shannon和Tsallis Entropies

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In this work, we first use the finite-differential time-domain (FDTD) to calculate the eigenenergies and eigenfunctions of a three dimensional (3D) cylindrical quantum wire. We assume that the inside of the wire is at zero potential. But, the outside of the wire has been chosen at different potentials as infinite and finite values. This is a true 3D procedure based on a direct implementation of the time-dependent Schrodinger equation. Then, we apply the Shannon and Tsallis entropy to obtain entropy and specific of the system. The results show that (i) the specific heat obtained by Tsallis has a peak structure. (ii) The entropy behavior for the finite and infinite confining potential has the same behavior at low temperatures. (iii) The peak value of specific heat increases with enhancing the quantum wire radius.
机译:在这项工作中,我们首先使用有限差分时域(FDTD)来计算三维(3D)圆柱形线线的特征精灵和特征函数。 我们假设导线内部处于零电位。 但是,在不同的潜力中选择了线的外部,作为无限和有限的值。 这是基于时间依赖于时间的Schrodinger方程的真正的3D过程。 然后,我们应用Shannon和Tsallis熵获取系统的熵和特定。 结果表明,(i)Tsallis获得的具体热量具有峰值结构。 (ii)有限和无限限制潜力的熵行为在低温下具有相同的行为。 (iii)特定热量的峰值随增强量子线半径而增加。

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