The research about the dynamics effect of laser microbeam is the frontier subject of quantum optics in the recent 10 years.
激光微束的动力学效应是近十年来量子光学领域中最前沿的研究课题。
These abnormal phenomena will definitely explore the study of sonic crystals, photonic crystals and quantum optics in photonic crystals.
这些效应相信会给声子晶体、光子晶体的研究,甚至光子晶体中量子光学的研究带来一些新奇的特征。
The works should be helpful for better understanding of the quantum interference in molecular multi-level system as well as the developments of quantum optics and molecular spectroscopy.
本文工作加深了对分子多能级系统量子干涉效应的认识,对量子光学、分子光谱学的发展具有一定的学科意义。
The interaction of the field and the atom is the main content in quantum optics field.
光场与原子相互作用是量子光学研究的主要内容。
The dispersion and absorption properties of optical medium have been extensively applied in quantum optics and nonlinear optics.
光学介质的吸收和色散性质在量子光学与非线性光学中有着广泛的应用。
Optical bistability phenomenon and all-optical computer are the important contents which are studied together presently in laser physics, quantum optics and computer science, etc.
光学双稳现象、全光学计算机是目前激光物理学、量子光学和计算机科学等多门学科共同研究的重要内容。
On the other hand, atomic coherence effect is an important topic in quantum optics and laser physics and it always has been one of hotspots in scientific research.
另一方面,原子相干效应是量子光学和激光物理学的重要课题,一直以来都是科学研究的热点之一。
Through one year effort, we have established a quantum optics laboratory and an atomic physics laboratory.
研究组经过一年多的努力已经搭建其一个量子光学实验室和一个原子物理实验室。
Interaction of atom and light field generated by the process more of a non-classical effects of quantum optics researchers.
原子与光场相互作用过程中所产生的非经典效应更加是量子光学研究的热点。
All these results can be used to analysing the quantum optics experiments of EPR Paradox.
这些结果可直接用来分析EPR问题的量子光学实验。
It is one of the most important contents for the quantum optics and nonlinear optics to study on the quantum properties and physical applications of the parametric image amplifier.
研究光学参量图像放大系统的量子特性和物理应用是非线性光学和量子光学的重要内容。
In recent years, the preparation of continuous variable entanglement has attracted a lot of attention in quantum optics and quantum information process.