原子激光
- 网络atom laser;atomic laser
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Raman型原子激光制备过程中光场的压缩特性
Squeezing properties of light field in the process preparing Raman-type atom laser
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原子激光传输的有效ABCD形式研究
Effective ABCD formulation of the propagation of the atom laser
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面预电离F原子激光和XeF准分子激光实验研究
Experimental Investigation of the F-atom Laser and the XeF Excimer Laser with the Surface Preionization
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将先前提出的放电激励金属蒸气自终止类型激光器高效运转的补充判据(G判据)从应用于中性原子激光介质推广至一价离子激光介质,取得了圆满的成功。
The G criterion formerly used for self terminating transition in pulsed discharge excited metal vapor laser is successfully extended from neutral atomic laser media to single ionic laser media .
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今天对BEC的研究即将走向实际应用-原子激光技术。
Today study on BEC is going to reach the practical use - atomic laser .
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对于某一方向上品质因子守恒的情况,可以通过解析某一方向品质因子守恒的充要方程,找到原子激光的ABCD形式的传播子。
For the conservative quality factor system in some direction , the propagator of ABCD formulation can be got .
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铋原子激光共振电离(LRI)跃迁及其电离效率
Laser Resonance Ionization Transition and Efficiency for Atoms of Bismuth
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本文在含时量子系统传播子的ABCD形式理论的基础上,进一步讨论原子激光这种品质因子不守恒系统的传输。
The propagation of the atom laser beam with non-conservation quality factor is discussed based on the theory of ABCD formulation of propagation of a time-dependent quantum system .
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用CCD观察到了Rb原子激光囚禁的稳定信号,获得了几种不同条件下Rb原子激光囚禁的照片,初步研究了囚禁信号对激光频率、磁场梯度和真空度等实验条件的依赖关系。
The steady signal of laser trapped Rb atoms was observed by CCD camera . Captured pictures of trapped Rb atoms vary as experimental conditions , such as laser frequency , gradient of magnetic field , and the Rb vapor .
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BEC的实现不仅对于基础理论研究具有重大意义,而且有着极其诱人的应用前景,例如实现原子激光。
The realization of BEC is of great significance not only for basic theoretical research , but also of very promising applications in technology , such as the realization of an atom laser .
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直径为320mm的大孔径高功率碘原子激光放大器
A high power atomic iodine amplifier with an aperture of 320 mm
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根据Holstein理论研究了碱土金属原子激光中的共振辐射俘获效应,分别计算了Ca,Sr和Ba蒸气激光在不同半径时产生共振辐射俘获效应的阈值温度、基态粒子数密度和共振能级的有效寿命。
The resonance radiation trapping in alkaline-earth metal atomic lasers were investigated according to Holstein 's theory . The threshold temperature , ground-state density and resonant level effective lifetime of the resonance radiation trapping were calculated for Ca , Sr , and Ba atomic vapor lasers with different tube radii .
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锶蒸气中原子激光与离子激光的同时振荡
Simultaneous oscillation of atom lasing and ion lasing in strontium vapor
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脉冲碘原子激光束二维强度分布的测量
Two-Dimensional Measurement of the Intensity Distribution of a Pulsed Iodine-Atom Laser
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碱土金属原子激光的共振辐射俘获效应
Resonance radiation trapping in alkaline - earth metal atomic lasers
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噪声间关联对原子激光谱密度的影响
Effects of Correlation between Noises on the Spectral Density of Atom Laser
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虚光场效应对原子激光压缩性质的影响
Influence of the virtual photon field on the squeezing properties of atom laser
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原子激光的传输和控制
The Propagation and Manipulation of the Atom Laser Beam
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原子激光的理论基础和实现
Theoretical Foundation of Atom Laser and its Realization
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横向可分原子激光的传输
Propagation of the Transverse Separable Atom Laser Beam
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三步锂原子激光共振电离计算
Calculation for lithium atoms by laser resonance ionization
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原子激光共振电离效率的估计
Estimation of laser resonance ionization efficiency
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锡原子激光共振电离
Laser Resonance Ionization for Tin Atoms
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双程放大碘原子激光放大器
Two-pass amplification atomic iodine laser amplifier
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第四章提出了另一种利用两模单原子激光制备纠缠相干态的方案。
In chapter 4 . another method is proposed to produce ECSs in a two-mode single-atom laser .
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用无极脉冲放电管泵浦兆兆瓦级碘原子激光放大器的建议
Proposal for use of electrodeless discharges as optical pumping for an atomic iodine laser amplifier of TW order
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本文报道了双程放大碘原子激光放大器的实验结果。
In this paper , we report the experimental results of a two-pass amplification atomic iodine laser amplifier .
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发现不仅噪声对原子激光的统计性质有影响,而且,噪声间的关联会使得原子激光的谱密度发生从单峰到双峰、或三峰的相变。
The spectral density displays one , two or three peaks , depending on the correlation strength between noises .
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本论文扼要介绍了铜原子激光和紫外铜离子激光的发展历史,特点和应用。
The development history , property and application of atomic copper laser and UV copper ion laser were compendiously described .
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但要想把原子激光付诸于应用,首先就要了解原子激光的特性和传输规律。
The propagation of an atom laser , which is outcoupled from a Bose-Einstein condensate , is investigated within the framework of quantum mechanics .