Fundamentals of Quantum Mechanics

M. Zubairy
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引用次数: 3

Abstract

The laws of quantum mechanics were formulated in the year 1925 through the work of Werner Heisenberg, followed by Max Born, Pascual Jordan, Paul Dirac, and Wolfgang Pauli. A separate but equivalent approach was independently developed by Erwin Schrödinger in early 1926. The laws governing quantum mechanics were highly mathematical and their aim was to explain many unresolved problems within the framework of a formal theory. The conceptual foundation emerged in the subsequent 2–3 years that indicated how radically different the new laws were from classical physics. In this chapter some of these salient features of quantum mechanics are discussed. The topics include the quantization of energy, wave–particle duality, the probabilistic nature of quantum mechanics, Heisenberg uncertainty relations, Bohr’s principle of complementarity, and quantum superposition and entanglement. This discussion should indicate how different and counterintuitive its fundamentals are from those of classical physics.
量子力学基础
1925年,维尔纳·海森堡、马克斯·玻恩、帕斯夸尔·乔丹、保罗·狄拉克和沃尔夫冈·泡利相继提出了量子力学定律。1926年初,Erwin Schrödinger独立开发了一种独立但等效的方法。控制量子力学的定律是高度数学化的,其目的是在形式理论的框架内解释许多尚未解决的问题。在随后的2-3年里,概念基础的出现表明了新定律与经典物理学的根本不同。本章将讨论量子力学的一些显著特征。主题包括能量的量子化,波粒二象性,量子力学的概率性质,海森堡的不确定性关系,玻尔的互补原理,以及量子叠加和纠缠。这种讨论应该表明,它的基本原理与经典物理学的基本原理是多么不同和违反直觉。
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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