排序方式: 共有61条查询结果,搜索用时 11 毫秒
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锶原子单态和三重态间的互组跃迁(5s2)1S0-(5s5p)3P1辐射率远小于一般的电偶极跃迁,共振跃迁荧光信号微弱。介绍了一种应用于探测该互组跃迁荧光谱的直流偏置探测器。该探测器选用极低输入偏置电流运算放大器作为前置放大,具有信噪比高、增益高、偏置可调等优点。此探测器探测增益为106 V/W量级,-3dB带宽为1MHz。实验中利用该探测器对锶原子互组跃迁(5s2)1S0-(5s5p)3P1微弱共振荧光进行探测,获得信噪比很好的共振荧光谱,且无直流偏置,并由此获得高信噪比的鉴频曲线。应用该探测器观测到了饱和荧光谱线以及对应的鉴频曲线,可用于689nm激光锁频,应用于锶光钟系统。 相似文献
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根据散射屏移动时动态主观散斑时间相关公式,分析了成像系统主要参数对动态主观散斑时间相关性的影响:一般情况下屏表面参数对散斑的时间相关性影响较小;激光光斑大于成像系统物面分辨斑时,散斑的时间相关性由透镜孔径大小决定;激光光斑小于成像系统物面分辨斑的尺寸时,减小激光光斑尺寸能减弱散斑时间相关性。对于以上结果进行了相关的理论模拟和部分实验验证,通过模拟发现,激光光斑小于成像系统物面分辨斑时,散斑时间相关长度和光斑尺寸大小成正比。结论对于激光投影系统中利用时间平均进行的散斑抑制具有指导意义。 相似文献
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Frequency-locked tunable LD laser with a broad bandwidth 总被引:1,自引:0,他引:1
Using lock-in amplifer and proportional, integral, and derivative (PID) electric circuit, the frequency of diode laser is stabilized on a highly mechanical stable Fabry-Perot (FP) cavity transmission peak. When the frequency locking system is on, the frequency tunable range of the laser is about 4 GHz around the D1 transition of Rb. The laser frequency tuning is implemented by scanning the FP cavity length. The fluctuation of frequency of the output laser is less than 1 MHz, and the drift of the center frequency is less than 1.5 MHz in 1.5 min. This system has great potential of the application in the experimental investigation of the interaction between light and atoms, especially, for the case of far off the atomic resonance. 相似文献
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基于一维水平光晶格的锶原子光晶格钟实验平台,当系统的稳定度和不确定度达到10-18量级以上时,由量子隧穿效应引起的钟频移变得不容忽视.在浅光晶格中,量子隧穿效应会使钟跃迁谱线发生明显的展宽现象,因此,本文通过研究浅光晶格中的量子隧穿现象,为87Sr原子光晶格钟系统不确定度的评估奠定基础.本实验在一维87Sr原子光晶格钟平台上,利用超稳超窄线宽的698 nm激光激发87Sr冷原子~lS0(|g>)→~3P0(|e>)跃迁(即钟跃迁),实现了对锶原子分布在特定量子态的制备.在深光晶格中,将原子制备到|e,nz=1>态后,再绝热地降低光晶格阱深,然后在浅光晶格中,探测激发态的载波-边带可分辨的钟跃迁谱线.从钟跃迁谱线中观测到载波谱线发生了明显的劈裂,表明原子在光晶格相邻格点间产生了明显的量子隧穿现象.通过对光晶格中量子隧穿机制的理解,不仅有利于提高光晶格钟的不确定度,也可为观测光晶格中费米子的自旋轨道耦合效应提供基础数据. 相似文献
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时间频率基准装置——铯原子喷泉钟, 在标准时间产生和保持、基础物理研究中发挥了重要的作用. 介绍了铯原子喷泉钟的工作原理, 对影响其性能的各项噪声源和频移项给出了分析, 影响频率稳定度性能的主要因素为Dick 效应相关的原子团装载时间、微波激励源相位噪声和探测激光的频率噪声, 影响频率不确定性能主要频移项为: 黑体辐射频移、冷原子碰撞频移、腔相位分布频移和微波泄露频移; 总结和比较了当前具有先进性能的铯原子喷泉钟采用的技术; 介绍了铯原子喷泉钟的主要应用方向、空间冷原子铯钟的研制情况和光学频率原子钟进展. 相似文献
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We report the ~(87)Sr optical lattice clock developed at the National Time Service Center. We achieved a closed-loop operation of the optical lattice clock based on ~(87)Sr atoms. The linewidth of the spin-polarized clock peak is 3.9 Hz with a clock laser pulse length of 300 ms, which corresponds to a Fourier-limited linewidth of 3 Hz. The fitting of the in-loop error signal data shows that the instability is approximately 5 × 10~(-15)τ~(-1/2), affected primarily by the white noise. The fractional frequency difference averages down to 5.7 × 10~(-17) for an averaging time of 3000 s. 相似文献
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Interrogation of optical Ramsey spectrum and stability study of an 87Sr optical lattice clock 下载免费PDF全文
Jing-Jing Xia 《中国物理 B》2022,31(3):34209-034209
The optical Ramsey spectrum is experimentally realized in an 87Sr optical lattice clock, and the measured linewidth agrees well with theoretical expectation. The coherence time between the clock laser and the atoms, which indicates the maximum free evolution period of using Ramsey detection to measure the atom-laser phase information, is determined as 340(23) ms by measuring the fringe contrasts of the Ramsey spectrum as a function of the free evolution period. Furthermore, with the same clock duty cycle of about 0.1, the clock stability is measured by using the Ramsey and Rabi spectra, respectively. The experimental and theoretical results show approximately the same stability as the two detection methods, which indicates that Ramsey detection cannot obviously improve the clock stability until the clock duty cycle is large enough. Thus, it is of great significance to choose the detection method of a specific clock. 相似文献