Chinese Physics B, Volume. 29, Issue 9, (2020)

Precision measurements with cold atoms and trapped ions

Qiuxin Zhang1, Yirong Wang1, Chenhao Zhu1, Yuxin Wang1, Xiang Zhang1,2, Kuiyi Gao1,2、†, and Wei Zhang1,2
Author Affiliations
  • 1Department of Physics, Renmin University of China, Beijing 00872, China
  • 2Beijing Key Laboratory of Opto-electronic Functional Materials and Micro-nano Devices, Renmin University of China, Beijing 10087, China
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    References(204)

    [1] W Nawrocki. Introduction to Quantum Metrology: The Revised SI System and Quantum Standards(2019).

    [2] E O Göbel, U Siegner. Quantum Metrology: Foundation of Units and Measurements(2015).

    [3] C L Degen, F Reinhard, P Cappellaro. Rev. Mod. Phys, 89(2017).

    [4] J M Dow, R E Neilan, C Rizos. J. Geod, 83, 191(2009).

    [5] D Normile, D Clery. Science, 333, 1820(2011).

    [6] T Rosenband, D B Hume, P O Schmidt, C W Chou, A Brusch, A Lorini, W H Oskay, R E Drullinger, T M Fortier, J E Stalnaker, S A Diddams, W C Swann, N R Newbury, W M Itano, D J Wineland, J C Bergquist. Science, 319, 1808(2008).

    [7] A D Ludlow, M M Boyd, J Ye, E Peik, P O Schmidt. Rev. Mod. Phys, 87, 637(2015).

    [8] T E Parker. Metrologia, 47, 1(2009).

    [9] J Reichert, R Holzwarth, T Udem, T W Haensch. Opt. Commun, 172, 59(1999).

    [10] S A Diddams, L S Ma, J Ye, J L Hall. Opt. Lett, 24, 1747(1999).

    [11] C E Wieman, D E Pritchard, D J Wineland. Rev. Mod. Phys, 71, S253(1999).

    [12] N Poli, C W Oates, P Gill, G M Tino. La Riv. del Nuovo Cim, 36, 555(2013).

    [13] S M Brewer, J S Chen, A M Hankin, E R Clements, C W Chou, D J Wineland, D B Hume, D R Leibrandt. Phys. Rev. Lett, 123(2019).

    [14] B J Bloom, T L Nicholson, J R Williams, S L Campbell, M Bishof, X Zhang, W Zhang, S L Bromley, J Ye. Nature, 506, 71(2014).

    [15] D S Jiang, B Arora, M S Safronova, C W Clark. J. Phys. B, 42(2009).

    [16] K Sengstock, U Sterr, J H Müller, V Rieger, D Bettermann, W Ertmer. Appl. Phys. B, 59, 99(1994).

    [17] J Friebe, A Pape, M Riedmann et al. Phys. Rev. A, 78(2008).

    [18] C Degenhardt, H Stoehr, C Lisdat et al. Phys. Rev. A, 72(2005).

    [19] G Wilpers, C W Oates, L Hollberg. Appl. Phys. B, 85, 31(2005).

    [20] T Ido, T H Loftus, M M Boyd, A D Ludlow, K W Holman, Jun Ye. Phys. Rev. Lett, 94(2005).

    [21] J B Chen. Chin. Sci. Bull, 54, 348(2009).

    [22] M A Norcia, J R K Cline, J A Muniz, J M Robinson, R B Hutson, A Goban, G E Marti, J Ye, J K Thompson. Phys. Rev. X, 8(2009).

    [23] W Zhuang, J B Chen. Chin. Sci. Bull, 60, 1963(2015).

    [24] T G Zhang, Y F Wang, X R Zang, W Zhuang, J B Chen. Chin. Sci. Bull, 58, 2033(2013).

    [25] W Zhuan, J B Chen. Opt. Lett, 39, 6339(2014).

    [26] Y M Yu, B K Sahoo. Phys. Rev. A, 97(2018).

    [27] A Derevianko, V A Dzuba, V V Flambaum. Phys. Rev. Lett, 109(2012).

    [28] M S Safronova, V A Dzuba, V V Flambaum, U I Safronova, S G Porsev, M G Kozlov. Phys. Rev. Lett, 113(2014).

    [29] V A Dzuba, A Derevianko, V V Flambaum. Phys. Rev. A, 86(2012).

    [30] M G Kozlov, M S Safronova, J R C López Urrutia, P O Schmidt. Rev. Mod. Phys, 90(2018).

    [31] C J Campbell, A G Radnaev, A Kuzmich, V A Dzuba, V V Flambaum, A Derevianko. Phys. Rev. Lett, 108(2012).

    [32] J Thielking, M V Okhapkin, P Głowacki et al. Nature, 556, 321(2018).

    [33] K Arnold, E Hajiyev, E Paez, C H Lee, M D Barrett, J Bollinger. Phys. Rev. A, 92(2015).

    [34] N Herschbach, K Pyka, J Keller, T E Mehlstäubler. Appl. Phys. B, 107, 891(2012).

    [35] J Keller, T Burgermeister, D Kalincev, J Kiethe, T E Mehlstäubler. J. Phys.: Conf. Ser, 723(2016).

    [36] M Schulte, N Lörch, I D Leroux, P O Schmidt, K Hammerer. Phys. Rev. Lett, 116(2016).

    [37] X Zhang. Quantum Computation and Simulation with Trapped Ions(2015).

    [38] H Katori, M Takamoto, V G Pal’Chikov, V D Ovsiannikov. Phys. Rev. Lett, 91(2003).

    [39] R Le Targat, L Lorini, Y Le Coq et al. Nat. Commun, 4, 2782(2013).

    [40] M Takamoto, F L Hong, R Higashi, H Katori. Nature, 435, 321(2005).

    [41] I Ushijima, M Takamoto, H Katori. Phys. Rev. Lett, 121(2018).

    [42] N Hinkley, J A Sherman, N B Phillips, M Schioppo, N D Lemke, K Beloy, M Pizzocaro, C W Oates, A D Ludlow. Science, 341, 1251(2013).

    [43] W F McGrew, X Zhang, R J Fasano et al. Nature, 564, 87(2018).

    [44] T L Nicholson, S L Campbell, R B Hutson et al. Nat. Commun, 6, 6896(2015).

    [45] S L Campbell, R B Hutson, G E Marti et al. Science, 358, 90(2017).

    [46] E Oelker, R B Hutson, C J Kennedy et al. Nat. Photon, 13, 714(2019).

    [47] Y G Lin, Q Wang, , , B K Lin, J E Zang, Z Sun, F Fang, T C Li, Z J Fang. Chin. Phys. Lett, 32(2015).

    [48] B Lu, Y Wang, J Han, S Zhang, J Li, H Chang. New J. Phys, 1(2017).

    [49] Q Xu, H Liu, B Lu, Y Wang, M Yin, D Kong, J Ren, X Tian, H Chang. Chin. Opt. Lett, 13(2015).

    [50] Y B Wang, M J Yin, J Ren, Q F Xu, B Q Lu, J X Han, Y Guo, H Chang. Chin. Phys. B, 27(2018).

    [51] Q Gao, M Zhou, C Han et al. Sci. Rep, 8, 8022(2018).

    [52] H Liu, X Zhang, K L Jiang, J Q Wang, Q Zhu, Z X Xiong, L X He, B L Lyu. Chin. Phys. Lett, 34(2017).

    [53] W Paul. Rev. Mod. Phys, 62, 531(1990).

    [54] F G Major, H G Dehmelt. Phys. Rev, 170, 91(1968).

    [55] L Feng, W L Tan, A De, A Menon, A Chu, G Pagano, C Monroe. Phys. Rev. Lett, 125(2020).

    [56] B Roth, U Fröhlich, S Schiller. Phys. Rev. Lett, 94(2005).

    [57] Y Huang, J Cao, P Liu, K Liang, B Ou, H Guan, X Huang, T Li, K Gao. Phys. Rev. A, 85(2012).

    [58] H Guan, Y Huang, C B Li, K L Gao. Acta Phys. Sin, 67(2018).

    [59] Y Huang, H Guan, P Liu, W Bian, L Ma, K Liang, T Li, K Gao. Phys. Rev. Lett, 116(2016).

    [60] M Delehaye, C Lacroûte. J. Mod. Opt, 65, 622(2018).

    [61] J Cao, P Zhang, J J Shang, K F Cui, J B Yuan, S J Chao, S M Wang, H L Shu, X R Huang. Appl. Phys. B, 123, 112(2017).

    [62] S M Wang, J Cao, J B Yuan, D X Liu, H L Shu, X R Huang. Opt. Express, 28(2020).

    [63] N Poli, M Schioppo, S Vogt, U Sterr, C H Lisdat, G M Tino. Appl. Phys. B, 117, 1107(2014).

    [64] S B Koller, J Grotti, A Al-Masoudi, S Dörscher, S Häfner, U Sterr, C H Lisdat. Phys. Rev. Lett, 118(2017).

    [65] Z L Newman, V Maurice, T Drake et al. Optica, 6, 680(2019).

    [66] T J Kippenberg, R Holzwarth, S A Diddams. Science, 332, 555(2011).

    [67] M Lezius, T Wilken, C Deutsch et al. Optica, 3, 1381(2016).

    [68] S C Burd, D T Allcock, T Leinonen et al. Optica, 3, 1294(2016).

    [69] G P Barwood, P Gill, G Huang, H A Klein. Meas. Sci. Technol, 23(2012).

    [70] W Liang, V S Ilchenko, D Eliyahu, A A Savchenkov, A B Matsko, D Seidel, L Maleki. Nat. Commun, 6, 7957(2015).

    [71] A M Eltony, S X Wang, G M Akselrod, P F Herskind, I L Chuang. Appl. Phys. Lett, 102(2013).

    [72] K K Mehta, C D Bruzewicz, R McConnell, R J Ram, J M Sage, J Chiaverini. Nat. Nanotechnol, 11, 1066(2016).

    [73] W M Itano, J C Bergquist, J J Bollinger, J M Gilligan, J Daniel, , F L Moore, M G Raizen, D J Wineland. Phys. Rev. A, 47, 3554(1993).

    [74] M Kitagawa, M Ueda. Phys. Rev. A, 47, 5138(1993).

    [75] J H Zhang, M Um, D S Lv, J N Zhang, L M Duan, K Kim. Phys. Rev. Lett, 121(2018).

    [76] Y Lu, S N Zhang, K Zhang, W T Chen, Y C Shen, J L Zhang, J N Zhang, K Kim. Nature, 572, 363(2019).

    [77] D Budker, M Romalis. Nat. Phys, 3, 227(2007).

    [78] D F Kimball, Dmitry Budker. Optical Magnetometry(2013).

    [79] T Isayama, Y Takahashi, N Tanaka, K Toyoda, K Ishikawa, T Yabuzaki. Phys. Rev. A, 59, 4836(1999).

    [80] O Hosten, N J Engelsen, R Krishnakumar, M A Kasevich. Nature, 529, 505(2016).

    [81] J G Bohnet, K C Cox, M A Norcia, J M Weiner, Z Chen, J K Thompson. Nat. Photon, 8, 731(2014).

    [82] I Kruse, K Lange, J Peise, B Lücke, L Pezzè, J Arlt, W Ertmer, C Lisdat, L Santos, A Smerzi, C Klempt. Phys. Rev. Lett, 117(2016).

    [83] W Muessel, H Strobel, D Linnemann, T Zibold, B Juliá-Díaz, M K Oberthaler. Phys. Rev. A, 92(2015).

    [84] M Faraday. Philos. Mag. (Abingdon), 28, 294.

    [85] A R Keyser, J A Rice, L D Schearer. J. Geophys. Res, 66, 4163(1961).

    [86] I K Kominis, T W Kornack, J C Allred, M V Romalis. Nature, 422, 596(2003).

    [87] R Mhaskar, S Knappe, J Kitching. Appl. Phys. Lett, 101(2012).

    [88] M L Terraciano, M Bashkansky, F K Fatemi. Phys. Rev. A, 77(2008).

    [89] F K Fatemi, M Bashkansky. Opt. Express, 18, 2190(2010).

    [90] M Koschorreck, M Napolitano, B Dubost, M W Mitchell. Phys. Rev. Lett, 104(2010).

    [91] M Koschorreck, M Napolitano, B Dubost, M W Mitchell. Appl. Phys. Lett, 98(2011).

    [92] A B Deb, B J Sawyer, N Kjærgaard. Phys. Rev. A, 88(2013).

    [93] O Elíasson, R Heck, J S Laustsen, M Napolitano, R Müller, M G Bason, J J Arlt, J F Sherson. J. Phys. B, 52(2019).

    [94] S Wildermuth, S Hofferberth, I Lesanovsky, S Groth, P Krüger, J Schmiedmayer, I Bar-Joseph. Appl. Phys. Lett, 88(2006).

    [95] S Wildermuth, S Hofferberth, I Lesanovsky, E Haller, L M Andersson, S Groth, I B Joseph, P Krüger, J Schmiedmayer. Nature, 435, 440(2005).

    [96] S Aigner, L D Pietra, Y Japha, O E Wohlman, T David, R Salem, R Folman, J Schmiedmayer. Science, 319, 1226(2008).

    [97] M Vengalattore, J M Higbie, S R Leslie, J Guzman, L E Sadler, D M Stamper-Kurn. Phys. Rev. Lett, 98(2007).

    [98] Y Eto, H Ikeda, H Suzuki, S Hasegawa, Y Tomiyama, S Sekine, M Sadgrove, T Hirano. Phys. Rev. A, 88(2013).

    [99] A Smith, B E Anderson, S Chaudhury, P S Jessen. J. Phys. B, 44(2011).

    [100] I M Savukov, S J Seltzer, M V Romalis, K L Sauer. Phys. Rev. Lett, 95(2005).

    [101] Y Cohen, K Jadeja, S Sula, M Venturelli, C Deans, L Marmugi, F Renzoni. Appl. Phys. Lett, 114(2019).

    [102] R J Sewell, M Koschorreck, M Napolitano, B Dubost, N Behbood, M W Mitchell. Phys. Rev. Lett, 109(2012).

    [103] W Muessel, H Strobel, D Linnemann, D B Hume, M K Oberthaler. Phys. Rev. Lett, 113(2014).

    [104] W Wasilewski, K Jensen, H Krauter, J J Renema, M V Balabas, E S Polzik. Phys. Rev. Lett, 104(2012).

    [105] C F Ockeloen, R Schmied, M F Riedel, P Treutlein. Phys. Rev. Lett, 111(2013).

    [106] D Shin, J A Ross, B M Henson, S S Hodgman, A G Truscott. New J. Phys, 22(2020).

    [107] G A Smith, S Chaudhury, P S Jessen. J. Phys. B, 5, 323(2003).

    [108] M Kasevich, S Chu. Appl. Phys. B, 54, 321(1992).

    [109] M J Snadden, J M Mcguirk, P Bouyer, K Haritos, M A Kasevich. Phys. Rev. Lett, 81, 971(1998).

    [110] J B Fixler, G T Foster, J M Mcguirk, M A Kasevich. Science, 315, 74(2007).

    [111] G Lamporesi, A Bertoldi, L Cacciapuoti, M Prevedelli, G M Tino. Phys. Rev. Lett, 100(2008).

    [112] F Riehle, T Kisters, A Witte, J Helmcke, C J Borde. Phys. Rev. Lett, 67, 177(1991).

    [113] A Lenef, T D Hammond, E T Smith, M S Chapman, R A Rubenstein, D E Pritchard. Phys. Rev. Lett, 78, 760(1997).

    [114] T L Gustavson, P Bouyer, M A Kasevich. Phys. Rev. Lett, 78, 2046(1997).

    [115] S Fray, C A Diez, T W Hänsch, M Weitz. Phys. Rev. Lett, 93(2004).

    [116] S Dimopoulos, P W Graham, J M Hogan, M A Kasevich. Phys. Rev. Lett, 98(2007).

    [117] K Bongs, M Holynski, J Vovrosh, P Bouyer, G Condon, E Rasel, C Schubert, W P Schleich, A Roura. Nat. Rev. Phys, 1, 731(2019).

    [118] A Peters, K Y Chung, S Chu. Metrologia, 38, 25(2001).

    [119] P Storey, C Cohen-Tannoudji. J. Phys. II, 4, 1999(1994).

    [120] H J Metcalf, P Van der Straten. Laser Cooling and Trapping(1999).

    [121] C J Foot. Atomic Physics(2005).

    [122] K Bongs, R Launay, M A Kasevich. Appl. Phys. B, 84, 599(2006).

    [123] R Anderson, H R Bilger, G E Stedman. Am. J. Phys, 62, 975(1994).

    [124] G Sagnac. CR Acad. Sci, 157, 708(1913).

    [125] G Sagnac. CR Acad. Sci, 157, 1410(1913).

    [126] N F Ramsey. Phys. Rev, 78, 695(1950).

    [127] M A Kasevich, E Riis, S Chu, R G DeVoe. Optics News, 15, 31(1989).

    [128] J F Clauser. Physica B+C, 151, 262(1988).

    [129] C J Borde, J Sharma, P Tourrenc, T Damour. J. Phys. Lett, 44, 983(1983).

    [130] O Carnal, J Mlynek. Phys. Rev. Lett, 66, 2689(1991).

    [131] A D Cronin, J Schmiedmayer, D E Pritchard. Rev. Mod. Phys, 81, 1051(2009).

    [132] D W Keith, C R Ekstrom, Q A Turchette, D E Pritchard. Phys. Rev. Lett, 66, 2693(1991).

    [133] M A Kasevich, S Chu. Phys. Rev. Lett, 67, 181(1991).

    [134] P R Berman. Atom interferometry(1997).

    [135] P Wang, R B Li, H Yan, , M S Zhan. Chin. Phys. Lett, 24, 27(2007).

    [136] S Altshuler, L Frantz. Matter wave interferometric apparatus(1973).

    [137] B Barrett, R Geiger, I Dutta, M Meunier, B Canuel, A Gauguet, P Bouyer, A Landragin. C. R. Phys, 15, 875(2014).

    [138] B L Fearey, T L Gustavson, P Bouyer, M A Kasevich. in Proceedings of SPIE Vol. 3270: Methods for Ultrasensitive Detection, 62(1998).

    [139] T L Gustavson, A Landragin, M A Kasevich. Class. Quantum Gravity, 17, 2385(2000).

    [140] D S Durfee, Y K Shaham, M A Kasevich. Phys. Rev. Lett, 97(2016).

    [141] J K Stockton, K Takase, M A Kasevich. Phys. Rev. Lett, 107(2011).

    [142] D Durfee, Y K Shaham, M A Kasevich. Phys. Rev. Lett, 97(2006).

    [143] B Canuel, F Leduc, D Holleville, A Gauguet, J Fils, A Virdis, A Clairon, N Dimarcq, C J Borde, A Landragin, P Bouyer. Phys. Rev. Lett, 97(2006).

    [144] A Gauguet, B Canuel, T Leveque, W Chaibi, A Landragin. Phys. Rev. A, 80(2009).

    [145] T Müller, M Gilowski, M Zaiser, P Berg, C Schubert, T Wendrich, W Ertmer, E M Rasel. Eur. Phys. J. D, 53, 273(2009).

    [146] K Takase. Precision rotation rate measurements with a mobile atom interferometer(2008).

    [147] P Berg, S Abend, G Tackmann, C Schubert, E Giese, W P Schleich, F A Narducci, W Ertmer, E M Rasel. Phys. Rev. Lett, 114(2015).

    [148] D Savoie, M Altorio, B Fang, L A Sidorenkov, R Geiger, A Landragin. Sci. Adv, 4(2018).

    [149] Z W Yao, S B Lu, R B Li, J Luo, J Wang, M S Zhan. Phys. Rev. A, 97(2018).

    [150] W J Xu, L Cheng, J Liu, C Zhang, K Zhang, Y Cheng, Z Gao, L S Cao, X C Duan, M K Zhou, Z K Hu. Opt. Express, 28(2020).

    [151] M A Kasevich, E Riis, S Chu, R G DeVoe. Phys. Rev. Lett, 63, 612(1989).

    [152] A Peters, K Y Chung, S Chu. Nature, 400, 849(1999).

    [153] H Müller, S W Chiow, S Herrmann, S Chu, K Y Chung. Phys. Rev. Lett, 100(2008).

    [154] S M Dickerson, J M Hogan, A Sugarbaker, D M Johnson, M A Kasevich. Phys. Rev. Lett, 111(2013).

    [155] J Le Gouët, T E Mehlstäubler, J Kim, S Merlet, A Clairon, A Landragin, F P Dos Santos. Appl. Phys. B, 92, 133(2008).

    [156] Q Bodart, S Merlet, N Malossi, F P Dos Santos, P Bouyer, A Landragin. Appl. Phys. Lett, 96(2010).

    [157] D L Butts, J M Kinast, B P Timmons, R E Stoner. J. Opt. Soc. Am. B, 28, 416(2011).

    [158] Z K Hu, B L Sun, X C Duan, M K Zhou, L L Chen, S Zhan, Q Z Zhang, J Luo. Phys. Rev. A, 88(2013).

    [159] V Ménoret, P Vermeulen, N Le Moigne, S Bonvalot, P Bouyer, A Landragin, B Desruelle. Sci. Rep, 8(2018).

    [160] C Overstreet, P Asenbaum, T Kovachy, R Notermans, J M Hogan, M A Kasevich. Phys. Rev. Lett, 120(2018).

    [161] Y Cheng, K Zhang, L L Chen, T Zhang, W J Xu, X C Duan, M K Zhou, Z K Hu. Phys. Rev. A, 98(2018).

    [162] P W Huang, B Tang, X Chen, J Q Zhong, Z Y Xiong, L Zhou, J Wang, M S Zhan. Metrologia, 56(2019).

    [163] S K Wang, Y Zhao, W Zhuang, T C Li, S Q Wu, J Y Feng, C J Li. Metrologia, 55, 360(2018).

    [164] Z J Fu, B Wu, B Cheng, Y Zhou, K X Weng, D Zhu, Z Y Wang, Q Lin. Metrologia, 56(2019).

    [165] H T Xie, B Chen, J B Long, C Xue, L K Chen, S Chen. Chin. Phys. B, 29(2020).

    [166] J M Mcguirk, G T Foster, J B Fixler, M J Snadden, M A Kasevich. Phys. Rev. A, 65(2002).

    [167] G T Foster, J B Fixler, J M McGuirk, M A Kasevich. Opt. Lett, 27, 951(2002).

    [168] G Rosi, F Sorrentino, L Cacciapuoti, M Prevedelli, G M Tino. Nature, 510, 518(2014).

    [169] F Sorrentino, Q Bodart, L Cacciapuoti, Y H Lien, M Prevedelli, G Rosi, L Salvi, G M Tino. Phys. Rev. A, 89(2014).

    [170] G D’Amico, G Rosi, S Zhan, L Cacciapuoti, M Fattori, G M Tino. Phys. Rev. Lett, 119(2017).

    [171] G Rosi. Metrologia, 55, 50(2017).

    [172] X C Duan, M K Zhou, D K Mao, H B Yao, X B Deng, J Luo, Z K Hu. Phys. Rev. A, 90(2014).

    [173] X N Wu. Gravity gradient survey with a mobile atom interferometer(2009).

    [174] M de Angelis, A Bertoldi, L Cacciapuoti, A Giorgini, G Lamporesi, M Prevedelli, G Saccorotti, F Sorrentino, G M Tino. Meas. Sci. Technol, 20(2008).

    [175] B Barrett, P A Gominet, E Cantin, L Antoni-Micollier, A Bertoldi, B Battelier, P Bouyer, J Lautier, A Landragin. Proc. Int. Sch. Phys. Fermi, 188, 493(2014).

    [176] M K Zhou, X C Duan, L L Chen, , Y Y Xu, Z K Hu. Chin. Phys. B, 24(2015).

    [177] L Zhou, Z Y Xiong, W Yang, B Tang, W C Peng, K Hao, R B Li, M Liu, J Wang, M S Zhan. Gen. Relativ. Gravit, 43, 1931(2011).

    [178] S M Dickerson, J M Hogan, A Sugarbaker, D M S Johnson, M A Kasevich. Phys. Rev. Lett, 111(2013).

    [179] B Canuel, A Bertoldi, L Amand et al. Sci. Rep, 8(2018).

    [180] L Badurina, E Bentine, D Blas et al. J. Cosmol. Astropart. Phys, 2020, 011(2020).

    [181] M S Zhan, J Wang, W T Ni et al. Int. J. Mod. Phys. D, 29(2019).

    [182] H Müller, S W Chiow, Q Long, S Herrmann, S Chu. Phys. Rev. Lett, 100(2008).

    [183] S W Chiow, T Kovachy, H C Chien, M A Kasevich. Phys. Rev. Lett, 107(2011).

    [184] T Müller, M Gilowski, M Zaiser, P Berg, C Schubert, T Wendrich, W Ertmer, E M Rasel. Eur. Phys. J, 53, 273(2009).

    [185] Q Luo, H Zhang, K Zhang, X C Duan, Z K Hu, L L Chen, M K Zhou. Rev. Sci. Instrum, 90(2019).

    [186] S Abend, M Gebbe, M Gersemann, H Ahlers, H Müntinga, E Giese, N Gaaloul, C Schubert, C Lämmerzahl, W Ertmer, W P Schleich, E M Rasel. Phys. Rev. Lett, 117(2016).

    [187] B Canuel, F Leduc, D Holleville, A Gauguet, J Fils, A Virdis, A Clairon, N Dimarcq, C J Bordé, A Landragin, P Bouyer. Phys. Rev. Lett, 97(2006).

    [188] A Gauguet, B Canuel, T Lévèque, W Chaibi, A Landragin. Phys. Rev. A, 80(2009).

    [189] Y J Chen, A Hansen, G W Hoth, W Ivanov, B Pelle, J Kitching, E A Donley. Phys. Rev. Appl, 12(2019).

    [190] M Keil, O Amit, S Y Zhou, D Groswasser, Y Japha, R Folman. J. Mod. Opt, 63, 1840(2016).

    [191] Y J Wang, D Z Anderson, V M Bright, E A Cornell, Q Diot, T Kishimoto, M Prentiss, R A Saravanan, S R Segal, S J Wu. Phys. Rev. Lett, 94(2005).

    [192] R Bücker, J Grond, S Manz, T Berrada, T Betz, C Koller, U Hohenester, T Schumm, A Perrin, J Schmiedmayer. Nat. Phys, 7, 608(2011).

    [193] G B Jo, Y Shin, S Will, T A Pasquini, M Saba, W Ketterle, D E Pritchard, M Vengalattore, M Prentiss. Phys. Rev. Lett, 98(2007).

    [194] T Müller, T Wendrich, M Gilowski, C Jentsch, E M Rasel, W Ertmer. Phys. Rev. A, 76(2007).

    [195] A J Kerman, V Vuletić, C Chin, S Chu. Phys. Rev. Lett, 84, 439(2000).

    [196] R Karcher, A Imanaliev, S Merlet, F P Dos Santos. New J. Phys, 20(2018).

    [197] W C Campbell, P Hamilton. J. Phys. B, 50(2017).

    [198] A D West. Phys. Rev. A, 100(2019).

    [199] E Urban, N Glikin, S Mouradian, K Krimmel, B Hemmerling, H Haeffner. Phys. Rev. Lett, 123(2019).

    [200] T Masuda, A Yoshimi, A Fujieda et al. Nature, 573, 238(2019).

    [201] B Seiferle, L von der Wense, P V Bilous et al. Nature, 573, 243(2019).

    [202] G M Tino, A Bassi, G Bianco et al. Eur. Phys. J. D, 73, 228(2019).

    [203] S Bize, P Laurent, M Abgrall et al. J. Phys. B, 38, S449(2005).

    [204] J Grotti, S Koller, S Vogt et al. Nat. Phys, 14, 437(2018).

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    Qiuxin Zhang, Yirong Wang, Chenhao Zhu, Yuxin Wang, Xiang Zhang, Kuiyi Gao, Wei Zhang. Precision measurements with cold atoms and trapped ions[J]. Chinese Physics B, 2020, 29(9):

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    Paper Information

    Received: Jun. 15, 2020

    Accepted: --

    Published Online: Apr. 29, 2021

    The Author Email: Gao Kuiyi (wlzhang@ruc.edu.cn)

    DOI:10.1088/1674-1056/aba9c6

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