As a result, quantum phenomena tend to be associated only with the world of elementary particles and with abstract thought experiments, such as the famous but mysterious schr? Dinger's cat, which exists in a quantum state that is simultaneously alive and dead. 结果,量子现象常常只和基本粒子的世界以及抽象的想像实验有关,例如鼎鼎大名却神秘莫测的「薛丁格的猫」,它所存在的量子态,可以同时是活著、又是死的。
The character of nuclear magnetism resonance medium ( i.e.oil fuel addition) is introduced and a elementary interpretation is also given on the basis of quantum theory. 介绍了核磁共振传递剂(油公燃料添加剂)的特点,并用量子学的概念对核磁共振传递剂作了初步解释。
By using the energy-coupling relation between them, two new concepts about the internal clock and external clock of an elementary particle are given. As a result, the basic relations about the relativity and quantum ( mechanics) are derived. 利用二者之间的能量耦合关系,给出了粒子内部时钟和外部时钟两个基本概念,由此导出了相对论和量子力学中的一些基本关系式。
Also the elementary theory and the application of anyon in Fractional Quantum Hall Effect and High Temperature Superconductivity are discussed in detail. 特别详细地讨论了任意子理论在分数量子霍尔效应和高温超导电现象中的应用。
It is shown that the seemingly very complicated formulae of Clebsch-Gordan coefficient in quantum angular momentum theory actually can be derived in such a simple way using only elementary mathematics and basic quantum mechanics. 用完全初等的方法推导了量子力学角动量理论中Clebsc-Gordan系数、3j系数,所用的仅是一些初等排列组合和量子力学基本知识;
Analogous to the way a classical computer is built from an electrical circuit containing wires and logic gates, a quantum computer is built from a quantum circuit containing wires and elementary quantum gates to carry around and manipulate the quantum information. 类似于经典计算机是由包含连线和逻辑门的线路建造的,量子计算机是由包含连线和基本量子门排列起来,形成的处理量子信息的量子线路建造的。
Starting from the concept of entropy, elementary macroscopic and microscopic analysis are presented with thermodynamics, statistical physics and quantum theory. 本文从熵的观点出发,利用热力学,统计物理与量子力学理论分别从宏观与微观的角度对磁制冷的物理原理进行了初等分析。
Unit Particle and Elementary Particle ⅱ. Quantum Numbers of an Elementary Particle and Variations of the Quantum Numbers in the Elementary Particle Reactions 基本粒子与单元粒子Ⅱ.基本粒子的量子数及其在反应中的变化规律
In Chapter 2, introduces elementary theory and quantum chemistry computation methods, which mainly contained the reaction surface, crossing rules of the potential energy surfaces, tradition transition state theory, spin-orbit coupling mechanism, rules for intersystem crossing and natural bond orbital theory. 第二章简要地介绍了量子化学计算方法,主要包括量子化学基本理论和反应势能面、势能面相交与不相交规则、过渡态理论和系间窜越的选择规则。