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Symmetric Matter Wave Splitting of Magnetically Insensitive States by Standing Wave Raman Light
Chen K(陈康); Chen T(陈涛); Qian J(钱军); Li XL(李晓林); Wang YZ(王育竹); k.chen@siom.ac.cn; xiaolin_li@siom.ac.cn
2016
Source Publication光学学报
Volume36Issue:9Pages:902001
AbstractThe method of Raman-Nath symmetric beam splitting based on magnetically insensitive states and the scheme of internal state interference are proposed.The interference based on magnetically insensitive states is insensitive to the magnetic fluctuation,which is beneficial to the contrast enhancement of interference fringes.If such a Raman-Nath symmetric beam splitting method is applied in the path-conjugate atom gyroscope,the system noise is obviously reduced.By means of optimizing the symmetric-beam-splitting parameters of double pulses,it is possible to obtain a high diffraction efficiency.The scheme of internal state interference is successfully used to solve the problem of momentum state interference being susceptible to the environment.
SubtypeArticle
Other Abstract提出了基于磁不敏态的Raman-Nath对称分束方法和内态干涉方案。基于磁不敏态的干涉对磁场涨落敏感性较低,有助于增强干涉条纹的对比度。如果将Raman-Nath对称分束方法应用于路径共轭的原子陀螺仪,系统噪声可显著降低。通过优化双脉冲对称分束参数,可以获得较高的衍射效率。内态干涉方案成功解决了干涉动量态易受环境影响的问题。
Department量光
DOI10.3788/AOS201636.0912001
Funding Organization国家自然科学基金 ; 国家自然科学基金 ; 国家自然科学基金 ; 国家自然科学基金
Indexed ByCSCD
Funding Organization国家自然科学基金 ; 国家自然科学基金 ; 国家自然科学基金 ; 国家自然科学基金
WOS IDCSCD:5801978
CSCD IDCSCD:5801978
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Document Type期刊论文
Identifierhttp://ir.siom.ac.cn/handle/181231/27830
Collection量子光学重点实验室
Corresponding Authork.chen@siom.ac.cn; xiaolin_li@siom.ac.cn
Affiliation中国科学院上海光学精密机械研究所
Recommended Citation
GB/T 7714
Chen K,Chen T,Qian J,et al. Symmetric Matter Wave Splitting of Magnetically Insensitive States by Standing Wave Raman Light[J]. 光学学报,2016,36(9):902001.
APA 陈康.,陈涛.,钱军.,李晓林.,王育竹.,...&xiaolin_li@siom.ac.cn.(2016).Symmetric Matter Wave Splitting of Magnetically Insensitive States by Standing Wave Raman Light.光学学报,36(9),902001.
MLA 陈康,et al."Symmetric Matter Wave Splitting of Magnetically Insensitive States by Standing Wave Raman Light".光学学报 36.9(2016):902001.
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