Historical Development

P. Peebles
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Abstract

This chapter presents the origins of quantum mechanics. The story of how people hit on the highly non-intuitive world picture of quantum mechanics, in which the physical state of a system is represented by an element in an abstract linear space and its observable properties by operators in the space, is fascinating and exceedingly complicated. The much greater change from the classical world picture of Newtonian mechanics and general relativity to the quantum world picture came in many steps taken by many people, often against the better judgment of participants. There are three major elements in the story. The first is the experimental evidence that the energy of an isolated system can only assume special discrete or quantized values. The second is the idea that the energy is proportional to the frequency of a wave function associated with the system. The third is the connection between the de Broglie relation and energy quantization through the mathematical result that a wave equation with fixed boundary conditions allows only discrete quantized values of the frequency of oscillation of the wave function (as in the fundamental and harmonics of the vibration of a violin string).
历史发展
本章介绍量子力学的起源。在量子力学中,一个系统的物理状态由抽象线性空间中的一个元素表示,而它的可观察属性由空间中的算子表示。人们是如何偶然发现这个高度非直觉的世界图景的,这个故事既迷人又极其复杂。从牛顿力学和广义相对论的经典世界图景到量子世界图景的更大变化是许多人采取的许多步骤,往往违背了参与者的更好判断。这个故事有三个主要元素。第一个是实验证据,表明孤立系统的能量只能假设特殊的离散值或量子化值。第二个是能量与与系统相关的波函数的频率成正比的想法。第三是德布罗意关系和能量量子化之间的联系,通过一个数学结果,即具有固定边界条件的波动方程只允许波函数振荡频率的离散量子化值(如小提琴弦振动的基频和谐波)。
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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