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1)  quantum squeezed effection
量子压缩效应
1.
It is shown that the quantum squeezed effection didn t exist.
通过正则变换 ,用代数法求解了电感耦合电路的量子涨落 ,并指出电感耦合电路不存在量子压缩效应
2)  soliton compression effect
孤子压缩效应
3)  soliton-effect compression
孤子效应压缩
1.
A method to improve the quality of soliton-effect compression of picosecond pulse in loss fibers;
一种改善损耗光纤中皮秒脉冲孤子效应压缩效果的方法
2.
The effect of stimulated raman scattering and third-order dispersion on the quality of soliton-effect compression is ana- lyzed by simulating the transmission of picosecond pulse described by NLS equation in dispersion - shifted fiber numerically by the method of split-step Fourier.
在色散位移光纤中,采用分步傅立叶方法对非线性薛定鄂方程进行了数值计算与模拟皮秒脉冲在色散位移光纤中的传输,计算和分析了受激拉曼散射效应(SRS)和三阶色散对色散位移光纤中皮秒脉冲的孤子效应压缩的影响。
3.
In dispersion decreasing fiber, the effect of initial chirp on the quality of soliton-effect compression is analyzed by simulating the transmission of picosecond pulse numerically.
在色散沿光纤传输方向线性减小的光纤中,用分步傅里叶方法数值模拟皮秒脉冲的传输,计算和分析了初始啁啾对色散渐减光纤中皮秒脉冲的孤子效应压缩的影响。
4)  atom squeezing effect
原子压缩效应
1.
Atom squeezing effect in the process of interaction between light of q ossillation as a model for the light field and atom has been studied and atom squeezing effect has bee obtained descried by q paremeter.
研究了q振子为光场模型的光与原子相互作用过程中的原子压缩效应,得出原子压缩效应可用q参数描述的结
5)  squeezing effect of atom
原子的压缩效应
1.
With the vacuum state two-photon Jaynes-Cummings model,the squeezing effect of atom was investigated numerically by the method of numerical diagonal within non rotating wave approximation, some significant results that could not be got within rotating wave approximation were obtained;and the influence of initial atomic coherence on squeezing effect of atom were showed.
利用数值对角化方法,数值地探讨了非旋波近似下真空态双光子Jaynes-Cummings模型中原子的压缩效应,获得了旋波近似下不可能有的较有意义的结果;揭示了初始原子相干性对原子压缩效应的影响;同时,数值地显示了该系统在不同条件下所呈现的有规或无规动力学行为。
6)  photon-number squeezing
光子数压缩效应
1.
Using the Langevin equation theory, we show in this paper that pump statistics, atomic coherence and atomic phase fluctuations can result in photon-number squeezing in the linear region of operation of many one-photon lasers.
利用朗之万方程理论证明,在多单光子激光振荡的线性区域,泵浦统计、原子相干性及原子位相起伏可导致光子数压缩效应。
补充资料:宏观量子力学效应


宏观量子力学效应
macroscopic quantum machanical effect

hongguonJ旧ngz)}jxuex旧oy,ng宏观t子力学效应(maeroseopie quantummaehanieal effeet)超导电性的物理行为是晶体中电子集体的量子多体问题,遵守量子力学规律。而这种微观的规律可以用宏观现象表现出来,称为宏观量子力学效应。其基本的物理概念是基于宏观数量的多电子间题,在低温条件下,可以用单一的宏观波函数来描述。特别是在超导体和超流体中最为显著,例如,超导体中迈斯纳效应、磁通量子效应、约瑟夫逊效应、准粒子隧道效应,宏观量子干沙效应等。 (金新)
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