An Alternative Operation Scheme to Improve the Efficiency of a Stark Decelerator
Mei Du , Dongdong Zhang* , and Dajun Ding*
Institute of Atomic and Molecular Physics, Jilin University, Changchun 130012, China
Abstract :A Stark decelerator can slow down polar molecules to very low velocities. When the velocities are very low, the number of cold molecules obtained is very small. In order to obtain a higher quantity of cold molecules, inspired by the work of Reens et al. [Phys. Rev. Res. 2 (2020) 033095 ], we propose an alternative method of operating a Stark decelerator. Through the trajectory simulation of OH molecules in the decelerator, we find that the number of cold molecules can be greatly increased by one order of magnitude at both low and high final velocities on a Stark decelerator consisting of around 150 electrodes. This development is due to the improved longitudinal and the transverse focusing property provided by the new switching schemes and the high-voltage configurations on the decelerator unit.
收稿日期: 2021-09-25
出版日期: 2021-11-18
[1] Carr L D, DeMille D, Krems R V, and Ye J 2009 New J. Phys. 11 055049
[2] Tomza M, Jachymski K, Gerritsma R, Negretti A, Calarco T, Idziaszek Z and Julienne P S2019 Rev. Mod. Phys. 91 035001
[3] Wall T E 2016 J. Phys. B 49 243001
[4] Safronova M S, Budker D, DeMille D, Kimball D F J, Derevianko A, and Clark C W 2018 Rev. Mod. Phys. 90 025008
[5] Chupp T E, Fierlinger P, Ramsey-Musolf M J, and Singh J T 2019 Rev. Mod. Phys. 91 015001
[6] Cairncross W B and Ye J 2019 Nat. Rev. Phys. 1 510
[7] Lin Y, Leibrandt D R, Leibfried D, and Chou C W 2020 Nature 581 273
[8] Albert V V, Covey J P, and Preskill J 2020 Phys. Rev. X 10 031050
[9] Phillips W D 1998 Rev. Mod. Phys. 70 721
[10] Liang Z T, Lv Q X, Zhang S C, Wu W T, Du Y X, Yan H, and Zhu S L 2019 Chin. Phys. Lett. 36 080301
[11] Yuan J, Ma Y, Li R, Ma H, Zhang Y, Ye D, Shen Z, Yan T M, Wang X, Weidemüller M, and Jiang Y 2020 Chin. Phys. Lett. 37 053201
[12] Wang K P, Zhuang J, He X D, Guo R J, Sheng C, Xu P, Liu M, Wang J, and Zhan M S 2020 Chin. Phys. Lett. 37 044209
[13] Zhou P P, Chen S L, Liang S Y, Sun W, and Gao K L 2020 Chin. Phys. Lett. 37 093701
[14] Chen S L, Zhou P P, Liang S Y, Sun W, Sun H Y, Huang Y, Guan H, and Gao K L 2020 Chin. Phys. Lett. 37 073201
[15] Ubachs W, Bagdonaite J, Salumbides E J, Murphy M T, and Kaper L 2016 Rev. Mod. Phys. 88 021003
[16] Bethlem H L, Berden G, and Meijer G 1999 Phys. Rev. Lett. 83 1558
[17] Schnell M and Meijer G 2009 Angew. Chem. Int. Ed. 48 6010
[18] van de Meerakker S Y T, Bethlem H L, Vanhaecke N, and Meijer G 2012 Chem. Rev. 112 4828
[19] Haas D, Scherb S, Dongdong Z, and Willitsch S 2017 EPJ Tech. Instrum. 4 6
[20] Fu G B, Deng L Z, and Yin J P 2008 Chin. Phys. Lett. 25 923
[21] Deng L Z, Fu G B, and Yin J P 2009 Chin. Phys. B 18 149
[22] Yin Y L, Xia Y, and Yin J P 2006 Chin. Phys. Lett. 23 2737
[23] Vanhaecke N, Meier U, Andrist M, Meier B H, and Merkt F 2007 Phys. Rev. A 75 031402
[24] Narevicius E, Parthey C G, Libson A, Riedel M F, Even U, and Raizen M G 2007 New J. Phys. 9 96
[25] Hogan S D, Motsch M, and Merkt F 2011 Phys. Chem. Chem. Phys. 13 18705
[26] Lavert-Ofir E et al. 2011 Phys. Chem. Chem. Phys. 13 18948
[27] Narevicius E and Raizen M G 2012 Chem. Rev. 112 4879
[28] Damjanović T et al. 2021 New J. Phys. 23 105006
[29] Damjanović T, Willitsch S, Vanhaecke N, Haak H, Meijer G, Cromiéres J P, and Zhang D 2021 New J. Phys. 23 105007
[30] Hutzler N R, Lu H I, and Doyle J M 2012 Chem. Rev. 112 4803
[31] Truppe S et al. 2018 J. Mod. Opt. 65 648
[32] Tarbutt M R 2018 Contemp. Phys. 59 356
[33] Yin Y, Xu S, Xia M, Xia Y, and Yin J 2018 Phys. Rev. A 97 043403
[34] Yan K, Wei B, Yin Y, Xu S, Xu L, Xia M, Gu R, Xia Y, and Yin J 2020 New J. Phys. 22 033003
[35] Jones K M, Tiesinga E, Lett P D, and Julienne P S 2006 Rev. Mod. Phys. 78 483
[36] Ulmanis J, Deiglmayr J, Repp M, Wester R, and Weidemüller M 2012 Chem. Rev. 112 4890
[37] Köhler T, Góral K, and Julienne P S 2006 Rev. Mod. Phys. 78 1311
[38] Chin C, Grimm R, Julienne P, and Tiesinga E 2010 Rev. Mod. Phys. 82 1225
[39] Yan X C, Sun D L, Wang L, Min J, Peng S G, and Jiang K J 2021 Chin. Phys. Lett. 38 056701
[40] Guo G F, Bao X X, Ta N L, and Gu H Q 2021 Chin. Phys. Lett. 38 040302
[41] He X, Wang K, Zhuang J, Xu P, Gao X, Guo R, Sheng C, Liu M, Wang J, Li J, Shlyapnikov G V, and Zhan M 2020 Science 370 331
[42] Cheuk L W, De An R L, Augenbraun B L, Bao Y, Burchesky S, Ketterle W, and Doyle J M 2018 Phys. Rev. Lett. 121 083201
[43] Enomoto K, Kasa K, Kitagawa M, and Takahashi Y 2008 Phys. Rev. Lett. 101 203201
[44] Bloch I, Dalibard J, and Zwerger W 2008 Rev. Mod. Phys. 80 885
[45] Wang Q, Hou S, Xu L, and Yin J 2016 Phys. Chem. Chem. Phys. 18 5432
[46] Bochinski J R, Hudson E R, Lewandowski H J, and Ye J 2004 Phys. Rev. A 70 043410
[47] van de Meerakker S Y T, Vanhaecke N, Bethlem H L, and Meijer G 2005 Phys. Rev. A 71 053409
[48] Gilijamse J J, Küpper J, Hoekstra S, Vanhaecke N, van de Meerakker S Y T, and Meijer G 2006 Phys. Rev. A 73 063410
[49] van de Meerakker S Y T, Vanhaecke N, Bethlem H L, and Meijer G 2006 Phys. Rev. A 73 023401
[50] Scharfenberg L, Haak H, Meijer G, and van de Meerakker S Y T 2009 Phys. Rev. A 79 023410
[51] Zhang D, Meijer G, and Vanhaecke N 2016 Phys. Rev. A 93 023408
[52] Reens D, Wu H, Aeppli A, McAuliffe A, Wcisło P, Langen T, and Ye J 2020 Phys. Rev. Res. 2 033095
[53] Hudson E R, Bochinski J R, Lewandowski H J, Sawyer B C, and Ye J 2004 Eur. Phys. J. D 31 351
[54] Tarbutt M R et al. 2004 Phys. Rev. Lett. 92 173002
[55] van de Meerakker S Y T, Smeets P H M, Vanhaecke N, Jongma R T, and Meijer G 2005 Phys. Rev. Lett. 94 023004
[56] Sawyer B C, Stuhl B K, Lev B L, Ye J, and Hudson E R 2008 Eur. Phys. J. D 48 197
[57] van der Meerakker S Y T 2006 PhD Dissertation (Radboud Universiteit)
[1]
FU Guang-Bin;DENG Lian-Zhong;YIN Jian-Ping. A New Desirable Molecular Species for Stark Deceleration [J]. 中国物理快报, 2008, 25(3): 923-926.
[2]
MA Hui;ZHOU Bei;LIAO Bin;YIN Jian-Ping. Electrostatic Surface Trap for Cold Polar Molecules with a Charged Circular Wire [J]. 中国物理快报, 2007, 24(5): 1228-1230.
[3]
YIN Ya-Ling;XIA Yong;Chen Hai-Bo;YIN Jian-Ping. Experimental Study on Electrostatic Guiding of Supersonic D2 O Molecular Beam with Two Charged Wires [J]. 中国物理快报, 2007, 24(4): 917-920.
[4]
DENG Lian-Zhong;XIA Yong;YIN Jian-Ping. A Novel Electrostatic Guiding Scheme for Cold Polar Molecules in Weak-Field-Seeking States [J]. 中国物理快报, 2005, 22(8): 1887-1890.
[5]
LIU Yu-Yan;;GUO Yuan-Qing;HUANG Guang-Ming;LIN Jie-Li;DUAN Chuan-Xi;LI Feng-Yan;LI Jin-Rui. Application of Laser Magnetic Resonance Spectroscopy to the
Measurement of Electric Dipole Moment of Free Radicals
[J]. 中国物理快报, 2001, 18(6): 774-775.