Energy Level Quantization in the 1D Quantum Well in Case of Instantaneous Stationary State with the Non-Relativistic Wall and Particle Motion

Q3 Mathematics
N.I. Yurasov
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引用次数: 1

Abstract

The paper considers the problem of finding energy levels in the 1D quantum well in case of its width alteration at the nonrelativistic rate. According to the reviewed literature, the exact solution is known only in the case of nonrelativistic motion of the 1D quantum well wall at the constant rate. It is shown that motion with the constant rate is physically unrealizable. Therefore, it is necessary to find at least small areas of the Schrodinger equation solution for a wider range of nonrelativistic alterations in the 1D quantum well width. Analysis results presented in the study show existence of such areas. The found areas correspond to the instantaneous stationary states satisfying the Bohr quantization condition. In this case, the Dirichlet condition is also satisfied on the moving wall. It means that in this case energy of the level with the n number also becomes a function of the k second quantum number, which takes into account dynamic alteration in the 1D quantum well width. Variants were found of the k second quantum number spectrum and of the quantum level spectrum in various cases of the wall continuous motion with zero initial speed and finite acceleration. Within the framework of the analysis used, formulas were obtained to change the difference between energies of the two arbitrary levels. An analysis was made for the boundaries of the wall speed and the 1D quantum well width in considering the nonrelativistic problem. The obtained results and their possible applications are under discussion, including analysis of the problems related to nanotechnology
具有非相对论壁和粒子运动的瞬时定态的一维量子阱中的能级量子化
研究一维量子阱宽度以非相对论速率变化时的能级求解问题。根据文献综述,只有在一维量子阱壁以恒定速率进行非相对论性运动的情况下,才知道精确解。结果表明,匀速运动在物理上是不可实现的。因此,对于一维量子阱宽度的更大范围的非相对论性变化,有必要找到薛定谔方程解的至少小区域。本研究的分析结果表明,此类区域是存在的。发现的区域对应于满足玻尔量化条件的瞬时稳态。在这种情况下,移动壁面也满足狄利克雷条件。这意味着在这种情况下,n数能级的能量也成为k秒量子数的函数,它考虑了一维量子阱宽度的动态变化。在零初始速度和有限加速度的壁面连续运动的各种情况下,发现了k秒量子数谱和量子能级谱的变体。在所使用的分析框架内,得到了改变任意两个能级之间能量差的公式。在考虑非相对论性问题时,分析了壁速度和一维量子阱宽度的边界。讨论了所获得的结果及其可能的应用,包括分析了与纳米技术有关的问题
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
40
期刊介绍: The journal is aimed at publishing most significant results of fundamental and applied studies and developments performed at research and industrial institutions in the following trends (ASJC code): 2600 Mathematics 2200 Engineering 3100 Physics and Astronomy 1600 Chemistry 1700 Computer Science.
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