The quantum theory of light is in complete accord with these observations. 光的量子理论与这些观察完全相符。
Quantum theory is used to study the fidelity of quantum information of binomial light field interacting with pair atoms of entanglement state. 摘要应用全量子理论研究了初始处于纠缠态双原子与二项式光场共振相互作用的光场量子信息保真度。
Some optical phenomena depend on the quantum nature of light and as such some areas of optics are also related to quantum mechanics. 一些光学现象依赖于光的量子性质,因此一些光学领域也涉及到量子力学。
Quantum Properties of Light Field Interacting with Two Different Atoms 与非等同双原子相互作用下光场的量子特性
Enhanced external quantum efficiency of light emitting diodes by fabricating two-dimensional photonic crystal sapphire substrate with holographic technique 全息技术制作二维光子晶体蓝宝石衬底提高发光二极管外量子效率
Quantum properties of two-mode light fields interacting with Bose-Einstein condensate 玻色-爱因斯坦凝聚体与双模光场相互作用中光场的量子特性
The quantum of light is called a photon. 光的量子就称为光子。
Quantum Theory of Diffraction of Light 光场衍射的量子理论
Information Entropy and Fidelity for Quantum States of Light Field 光场量子态的信息熵和保真度
Quantum Properties of Light in The System of Two-mode Squeezing Vacuum Field Interacting with N-type Four-level Atom in Two-photon Transition 双模压缩真空场与N型四能级原子双光子跃迁相互作用系统中光场的量子特性
A simple and important rule in the quantum theory of light 光的量子理论中的一个简要规则
Quantum Theory of Light Emission for Atom System 原子系统的光发射量子理论
The results show that the quantum correlation properties of light are determined completely by initial field and keep unvariant in the process of interaction between light field and atomic BEC. 结果表明:双模压缩态光场在与原子玻色&爱因斯坦相互作用过程中,其量子相关性质保持不变,完全决定于初始光场。
In the quantum theory of light, the emission and absorption of a light quantum by an electron in the atom is equivalent to the interaction of the electron with the equivalent classical vector potential. This is a simple and important rule. 在光的量子理论中,光子被原子中电子的吸收和发射是等价于电子与一个等效经典矢势的相互作用,这是一个简要规则。
Quantum Properties of Two-mode Light Field Interacting with a Moving Two-level Atom 与运动二能级原子作用的双模光场的量子特性
The second-order coherence of multimode lasers based on the quantum theory of light is studied in this paper. 本文用光场的量子理论讨论多模激光场的二阶相干性的问题。
The Effect of Kerr-Like Medium on the Quantum Coherent Properties of the Light Field 类Kerr介质对光场量子相干特性的影响
Study on Electromagnetism Theory and Quantum Theory of Light Pressure 光压的电磁理论和量子理论的探讨
Calculating External Quantum Efficiency of High Bright Light Emitting Diodes 高亮度发光二极管外量子效率的计算
The result shows the mechanism of rapid thermal annealing. It is indicated that the quantum photo-effects of short wavelength light(≤ 730nm) maybe dominate the crystallize processing. 研究表明短波长光(≤730nm)的量子效应在晶化过程中可能起着至关重要的作用。实验结果表明,长波长光更有利于愈伤组织的再分化。
Quantum properties of light in the two-photon T-C model in Kerr medium Kerr介质中双光子T-C模型光场的量子特性
Short-term Efficacy of Hemotherapy With Quantum of Light Combined With Radiotherapy on Esophageal Cancer 光量子血疗配合放射治疗食管癌的近期疗效观察
Quantum Correlation Properties of Light Interacting with Bose-Einstein Condensate of Atoms 光场&原子BEC相互作用系统的量子相关性质
Time Quantum Theory of Resonance Light Scattering 共振光散射的时间量子理论
The concept of internal and external quantum efficiency of light emitting diodes ( LEDs) and the basic ways to improve this are first introduced. The epitaxial structure and growth of LED wafers are then briefly described, with emphasis on the techniques to enhance the quantum efficiency. 文章首先介绍了发光二极管(LED)的内量子效率、外量子效率的基本概念和提高量子效率的基本方法,接着对LED外延的结构和方法做了简要介绍。
Non-classical effects of quantum states of light are strongly relative to the study of quantum communication and quantum computation at present. 当前,量子保密通信和量子计算成为研究的热点,与之密切相关的是光场量子态的非经典效应、量子态制备与操控。
An ideal source of single photons emits one and only one photon in each time, which is a crucial resource for exploring the quantum nature of light and also a essential tool for quantum information processing and high-precision measurement. 理想的单光子源是指任意时刻都可以发射且只发射一个光子的光源。单光子源不仅是研究光量子本性的重要资源,也是实现量子信息处理和高精度测量的必要工具。
Based on the quantum theory, expression of light field under quantum theory is deduced. 基于光场的量子理论,推导了量子理论下光场的表示方法。
In recent years, a new scheme, which use of the electromagnetic induced transparency ( EIT) medium to store the quantum states of light field, is one of the important researches in quantum information science. 近年来,提出的利用电磁感应透明效应(EIT)将量子态光场存储在原子系综中的新方案,已发展成为目前量子信息科学的重要研究内容之一。