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Initial phase and free-particle wave packet evolution

机译:初始阶段和自由粒子波包的演变

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The evolution of the free-particle wave function in one dimension is the same as scalar Fresnel diffraction from a one-dimensional structure. Quantum mechanics courses often explore the propagation of Gaussian wave packets, but the diffractionlike mathematics is sufficiently tractable to investigate the propagation of other wave packets, both numerically and analytically. More importantly, the diffraction analogy facilitates the development of an intuitive understanding of the role that the initial phase plays in free-particle wave packet evolution. This article considers some of the effects of the initial phase function on the subsequent evolution of free-particle wave packets in the position representation. These considerations reinforce the idea that the classical mechanics limit embodied in the correspondence principle and formalized in the Ehrenfest theorem is necessarily an incomplete representation of quantum behavior.
机译:一维自由粒子波函数的演化与一维结构的标量菲涅耳衍射相同。量子力学课程经常探讨高斯波包的传播,但是类似衍射的数学方法在数值和分析上都足以研究其他波包的传播。更重要的是,绕射类比有助于促进对初始阶段在自由粒子波包演化中所起作用的直观理解。本文考虑了初始相位函数对位置表示中自由粒子波包后续演化的一些影响。这些考虑强化了这样一种观念,即对应原理中体现并在埃伦菲斯特定理中形式化的经典力学极限必然是量子行为的不完整表示。

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