Case study on the size of the particle for transmission probability to take place through the barrier

Rajendra Neupane
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Abstract

Diffraction phenomenon occurs when the wavelength of the wave is comparable to the size of the obstacle. Tunneling through a barrier occurs when the particle size is comparable to the width of the barrier. The Transmission probability versus potential energy curve is hyperbolic in nature. This main aim of this article is to show that there is no probability of penetrating the particle through the barrier if barrier width is extremely larger and extremely smaller than the particle size. The condition for tunneling is similar to the necessary and sufficient condition for diffraction to occur. The various examples presented here shows that the penetration of the particle through the barrier is only possible when the size of the particle is comparable to the size of the barrier height. This article shows that probability occurrence, Wave-particle duality and uncertainty of a particle exists only when there is comparable size between the particle and its barrier width.
案例研究了粒子大小对通过屏障发生传输概率的影响
当波的波长与障碍物的大小相当时,就会发生衍射现象。当颗粒的大小与屏障的宽度相当时,就会发生穿隧现象。传输概率-势能曲线本质上是双曲线。这篇文章的主要目的是表明,如果屏障宽度比颗粒尺寸大得多或小得多,则颗粒没有穿透屏障的可能性。隧穿的条件与衍射发生的充分必要条件相似。这里给出的各种例子表明,只有当颗粒的大小与屏障高度的大小相当时,颗粒才能穿透屏障。本文表明,只有当粒子的大小与其势垒宽度相当时,才存在粒子的发生概率、波粒二象性和不确定性。
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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