Fundamental Limitations of Cavity-Assisted Atom Interferometry

Fundamental Limitations of Cavity-Assisted Atom Interferometry
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DOI:
10.1103/physreva.96.053820
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发表时间:
2017-10
期刊:
Optical Cavities for Optical Atomic Clocks, Atom Interferometry and Gravitational-Wave Detection
影响因子:
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通讯作者:
M. D. Álvarez;Daniel D. Brown;A. Jones;C. Mow-Lowry;H. Miao;A. Freise
M. D. Álvarez;Daniel D. Brown;A. Jones;C. Mow-Lowry;H. Miao;A. Freise
中科院分区:
其他
文献类型:
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作者:
M. D. Álvarez;Daniel D. Brown;A. Jones;C. Mow-Lowry;H. Miao;A. Freise

文献摘要

相似文献

汉密尔顿等人(《物理学评论快报》114:100405,2015 [1])演示了光学腔内的原子干涉术,他们展示了一个\(\pi /2-\pi -\pi /2\)干涉仪,铯原子水平加载到垂直的40 cm腔体中(图6.1)。在该原理验证实验中,小腔模体积对总测量时间(仅为20 ms)施加了严格的限制。
Atom interferometry inside an optical cavity was demonstrated in Hamilton et al. (Phys Rev Lett 114:100405, 2015 [1]), where they show a \(\pi /2-\pi -\pi /2\) interferometer with caesium atoms loaded horizontally into a vertical 40 cm cavity (Fig. 6.1). In this proof of principle experiment, the small cavity mode volume placed a tight constraint on the total measurement time, which was just 20 ms.