Please wait a minute...
Chin. Phys. B, 2021, Vol. 30(5): 053702    DOI: 10.1088/1674-1056/abd767
ATOMIC AND MOLECULAR PHYSICS Prev   Next  

Setup of a dipole trap for all-optical trapping

Miao Wang(王淼)1,2,3, Zheng Chen(陈正)1,2,3, Yao Huang(黄垚)1,2, Hua Guan(管桦)1,2, and Ke-Lin Gao(高克林)1,2,3,†
1 State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China;
2 Key Laboratory of Atomic Frequency Standards, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China;
3 School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China
Abstract  Micromotion induced by the radio-frequency field contributes greatly to the systematic frequency shifts of optical frequency standards. Although different strategies for mitigating this effect have been proposed, trapping ions optically has the potential to provide a generic solution to the elimination of micromotion. This could be achieved by trapping a single ion in the dipole trap composed of a highpower laser field. Here, we present the setup of the dipole trap composed of a 532 nm laser at a power of 10 W aiming to optically trap a single 40Ca+ and we observe an AC-Stark shift of the fluorescence spectrum line of ~22 MHz caused by the 532 nm dipole beam. The beam waist of the dipole laser is several microns, which would provide a dipole potential strong enough for all-optical trapping of a single 40Ca+ ion.
Keywords:  dipole trap      AC-Stark shift      trap depth      all-optical trapping  
Received:  13 November 2020      Revised:  17 December 2020      Accepted manuscript online:  30 December 2020
PACS:  37.10.Ty (Ion trapping)  
  37.10.-x (Atom, molecule, and ion cooling methods)  
  42.62.Fi (Laser spectroscopy)  
Fund: Project supported by the National Key Research and Development Program of China (Grant Nos. 2018YFA0307500 and 2017YFA0304401), the National Natural Science Foundation of China (Grant Nos. 11634013 and 11774388), the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDB21030100), the CAS Youth Innovation Promotion Association (Grant Nos. 2018364 and Y201963), the Science Fund for Distinguished Young Scholars of Hubei Province, China (Grant No. 2017CFA040) and the K. C. Wong Education Foundation (Grant No. GJTD-2019-15).
Corresponding Authors:  Ke-Lin Gao     E-mail:  klgao@wipm.ac.cn

Cite this article: 

Miao Wang(王淼), Zheng Chen(陈正), Yao Huang(黄垚), Hua Guan(管桦), and Ke-Lin Gao(高克林) Setup of a dipole trap for all-optical trapping 2021 Chin. Phys. B 30 053702

[1] Paul W 1990 Rev. Mod. Phys. 62 531
[2] Phillips W D 1998 Rev. Mod. Phys. 70 721
[3] Godun R M, Nisbet-Jones P B, Jones J M, King S A, Johnson L A, Margolis H S, Szymaniec K, Lea S N, Bongs K and Gill P 2014 Phys. Rev. Lett. 113 210801
[4] Dubé P, Madej A A, Shiner A and Jian B 2015 Phys. Rev. A 92 042119
[5] Huang Y, Guan H, Liu P, Bian W, Ma L, Liang K, Li T and Gao K 2016 Phys. Rev. Lett. 116 013001
[6] Huntemann N, Sanner C, Lipphardt B, Tamm C and Peik E 2016 Phys. Rev. Lett. 116 063001
[7] Brewer S M, Chen J S, Beloy K, Hankin A M, Clements E R, Chou C W, McGrew W F, Zhang X, Fasano R J, Nicolodi D, Leopardi H, Fortier T M, Diddams S A, Ludlow A D, Wineland D J, Leibrandt D R and Hume D B 2019 Phys. Rev. A 100 013409
[8] Justin G. Bohnet, Brian C. Sawyer, Joseph W. Britton, Michael L. Wall, Ana Maria Rey, Michael Foss-Feig and Bollinger J J 2016 Science 352 1297
[9] Schafer V M, Ballance C J, Thirumalai K, Stephenson L J, Ballance T G, Steane A M and Lucas D M 2018 Nature 555 75
[10] Ge W, Sawyer B C, Britton J W, Jacobs K, Bollinger J J and Foss-Feig M 2019 Phys. Rev. Lett. 122 030501
[11] Pagano G, Hess P W, Kaplan H B, Tan W L, Richerme P, Becker P, Kyprianidis A, Zhang J, Birckelbaw E, Hernandez M R, Wu Y and Monroe C 2018 Quantum Sci. Technol. 4 014004
[12] Hempel C, Maier C, Romero J, McClean J, Monz T, Shen H, Jurcevic P, Lanyon B P, Love P, Babbush R, Aspuru-Guzik A, Blatt R and Roos C F 2018 Phys. Rev. X 8 031022
[13] Bautista-Salvador A, Zarantonello G, Hahn H, Preciado-Grijalva A, Morgner J, Wahnschaffe M and Ospelkaus C 2019 New J. Phys. 21 043011
[14] Wu Y K and Duan L M 2020 Chin. Phys. Lett. 37 070302
[15] Huang Y, Guan H, Zeng M, Tang L and Gao K 2019 Phys. Rev. A 99 011401
[16] Huang Y, Cao J, Liu P, Liang K, Ou B, Guan H, Huang X, Li T and Gao K 2012 Phys. Rev. A 85 030503
[17] Cetina M, Grier A T and Vuletic V 2012 Phys. Rev. Lett. 109 253201
[18] Nguyen l H, Kalev A, Barrett M D and Englert B G 2012 Phys. Rev. A 85 052718
[19] Schneider C, Enderlein M, Huber T and Schaetz T 2010 Nat. Photon. 4 772
[20] Du L J, Chen T, Song H F, Chen S L, Li H X, Huang Y, Tong X, Gao K L and Guan H 2015 Chin. Phys. B 24 083702
[21] Du L J, Song H F, Li H X, Chen S L, Chen T, Sun H Y, Huang Y, Tong X, Guan H and Gao K L 2015 Chin. Phys. B 24 113703
[22] Zhou P P, Chen S L, Liang S Y, Sun W, Sun H Y, Huang Y, Guan H and Gao K L 2020 Chin. Phys. Lett. 37 093701
[23] Li H X, Li M, Zhang Q Y and Tong X 2019 Chin. Phys. Lett. 36 073701
[24] Lucas D, Ramos A, Home J, McDonnell M, Nakayama S, Stacey J P, Webster S, Stacey D and Steane A 2004 Phys. Rev. A 69 012711
[25] Tanaka U, Matsunishi H, Morita I and Urabe S 2005 Appl. Phys. B 81 795
[26] Shao H, Wang M, Zeng M, Guan H and Gao K 2018 J. Phys. Commun. 2 095019
[27] Stenholm S 1986 Rev. Mod. Phys. 58 699
[28] Wineland D J and Itano W M 1979 Phys. Rev. A 20 1521
[29] Guan H, Huang Y, Liu P L, Bian W, Shao H and Gao K L 2015 Chin. Phys. B 24 054213
[30] Zhang B, Huang Y, Zhang H, Hao Y, Zeng M, Guan H and Gao K 2020 Chin. Phys. B 29 074209
[31] Schuda F, Stroud C R and Hercher M 1974 J. Phys. B: At. Mol. Phys. 7 L198
[32] Autler S H and Townes C H 1955 Phys. Rev. 100 703
[33] Grimm R, Weidemüller M and Ovchinnikov Y B 2000 Adv. At. Mol. Opt. Phys. 42 95
[34] Schneider C, Enderlein M, Huber T, Dürr S and Schaetz T 2012 Phys. Rev. A 85 013422
[1] Efficient loading of ultracold sodium atoms in an optical dipole trap from a high power fiber laser
Jing Xu(徐静), Wen-Liang Liu(刘文良), Ning-Xuan Zheng(郑宁宣), Yu-Qing Li(李玉清), Ji-Zhou Wu(武寄洲), Peng Li (李鹏), Yong-Ming Fu(付永明), Jie Ma(马杰), Lian-Tuan Xiao(肖连团), and Suo-Tang Jia(贾锁堂). Chin. Phys. B, 2021, 30(3): 033701.
[2] Interference properties of a trapped atom interferometer in two asymmetric optical dipole traps
Li-Yong Wang(王立勇), Xiao Li(李潇), Kun-Peng Wang(王坤鹏), Yin-Xue Zhao(赵吟雪), Ke Di(邸克), Jia-Jia Du(杜佳佳), and Jian-Gong Hu(胡建功). Chin. Phys. B, 2020, 29(12): 123701.
[3] Excessive levitation for the efficient loading of large-volume optical dipole traps
Xiaoqing Wang(王晓青), Yuqing Li(李玉清), Guosheng Feng(冯国胜), Jizhou Wu(武寄洲), Jie Ma(马杰), Liantuan Xiao(肖连团), Suotang Jia(贾锁堂). Chin. Phys. B, 2018, 27(1): 018702.
[4] Relationship measurement between ac-Stark shift of 40Ca+ clock transition and laser polarization direction
Hong-Fang Song(宋红芳), Shao-Long Chen(陈邵龙), Meng-Yan Zeng(曾孟彦), Yao Huang(黄垚), Hu Shao(邵虎), Yong-Bo Tang(唐永波), Hua Guan(管桦), Ke-Lin Gao(高克林). Chin. Phys. B, 2017, 26(9): 099501.
[5] Deterministic loading of an individual atom:Towards scalable implementation of multi-qubit
Jun He(何军), Bei Liu(刘贝), Jie-Ying Wang(王杰英), Wen-Ting Diao(刁文婷), Gang Jin(靳刚), Jun-Min Wang(王军民). Chin. Phys. B, 2017, 26(11): 113702.
[6] In-situ measurement of magnetic field gradient in a magnetic shield by a spin-exchange relaxation-free magnetometer
Fang Jian-Cheng (房建成), Wang Tao (王涛), Zhang Hong (张红), Li Yang (李阳), Cai Hong-Wei (蔡洪炜). Chin. Phys. B, 2015, 24(6): 060702.
[7] Production of 87Rb Bose-Einstein condensates in a hybrid trap
Duan Ya-Fan (段亚凡), Jiang Bo-Nan (姜伯楠), Sun Jian-Fang (孙剑芳), Liu Kang-Kang (刘亢亢), Xu Zhen (徐震), Wang Yu-Zhu (王育竹). Chin. Phys. B, 2013, 22(5): 056701.
[8] Single atoms transferring between a magneto-optical trap and a far-off-resonance optical dipole trap
He Jun(何军), Wang Jing(王婧), Yang Bao-Dong(杨保东), Zhang Tian-Cai(张天才), and Wang Jun-Min(王军民). Chin. Phys. B, 2009, 18(8): 3404-3408.
[9] Generation of sub-half-wavelength micro-optical traps by dichroic evanescent standing waves
Zhang Jing(张静), Zhang Tian-Cai(张天才), Wang Jun-Min(王军民), and Peng Kun-Chi(彭堃墀) . Chin. Phys. B, 2007, 16(5): 1295-1299.
[10] Simultaneous determination of trap depth and the ratio of the rate of recombination to that of capture from thermo-luminescence
Xu Zheng(徐征), Zhang Fu-Jun(张福俊), Zhao Su-Ling(赵谡玲), Wang Li-Wei(王丽伟), A. N. Georgobiani, V. B. Gutan, and Meng Li-Jian(孟立建). Chin. Phys. B, 2006, 15(8): 1883-1887.
[11] The influence of K4Fe(CN)6 on the photosensitivity of cubic AgCl microcrystal
Li Xiao-Wei (李晓苇), Liu Rong-Juan (刘荣鹃), Geng Ai-Cong (耿爱丛), Yang Shao-Peng (杨少鹏), Fu Guang-Sheng (傅广生). Chin. Phys. B, 2005, 14(2): 404-408.
No Suggested Reading articles found!