第一个例子:“盒子里的粒子”和量子化的平移运动

J. Autschbach
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引用次数: 0

摘要

本章介绍了简单的“盒子里的粒子”(Piab),以便读者能够熟悉应用量子配方和原子单位。PiaB在其一维,二维和三维变体中被引入,它演示了使用变量分离技术作为一种策略来解决具有两个或三个自由度的粒子的薛定谔方程。结果表明,粒子的约束使能量量子化。然后应用一维PiaB处理菁染料及其吸收色的电子光谱。然后,本章介绍了有限势阱的更一般的设置,以便介绍量子隧穿现象,并更广泛地讨论粒子(如电子)的非直观的“量子行为”。对扫描隧道显微镜和原子力显微镜也作了简要的讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A First Example: The “Particle in a Box“ and Quantized Translational Motion
The simple ‘particle in a box’ (Piab) is introduced in this chapter so that the reader can get familiar with applying the quantum recipe and atomic units. The PiaB is introduced in its one, two, and three dimensional variants, which demonstrates the use of the separation of variables technique as a strategy to solve the Schrodinger equation for a particle with two or three degrees of freedom. It is shown that the confinement of the particle causes the energy to be quantized. The one-dimensional PiaB is then applied to treat the electronic spectra of cyanine dyes and their absorption colors. The chapter then introduces more general setups with finite potential wells, in order to introduce the phenomenon of quantum tunnelling and to discuss more generally with the unintuitive ‘quantum behavior’ of particles such as electrons. Scanning tunnelling and atomic force microscopes are also discussed briefly.
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