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Chin. Phys. B, 2017, Vol. 26(3): 033702    DOI: 10.1088/1674-1056/26/3/033702
ATOMIC AND MOLECULAR PHYSICS Prev   Next  

BaF radical: A promising candidate for laser cooling and magneto-optical trapping

Liang Xu(许亮), Bin Wei(魏斌), Yong Xia(夏勇), Lian-Zhong Deng(邓联忠), Jian-Ping Yin(印建平)
State Key Laboratory of Precision Spectroscopy, School of Physics and Materials Science, East China Normal University, Shanghai 200062, China
Abstract  Recently, there have been great interest and advancement in the field of laser cooling and magneto-optical trapping of molecules. The rich internal structure of molecules naturally lends themselves to extensive and exciting applications. In this paper, the radical 138Ba19F, as a promising candidate for laser cooling and magneto-optical trapping, is discussed in detail. The highly diagonal Franck-Condon factors between the X2Σ1/2+ and A2Π1/2 states are first confirmed with three different methods. Afterwards, with the effective Hamiltonian approach and irreducible tensor theory, the hyperfine structure of the X2Σ1/2+ state is calculated accurately. A scheme for laser cooling is given clearly. Besides, the Zeeman effects of the upper (A2Π1/2) and lower (X2Σ1/2+) levels are also studied, and their respective g factors are obtained under a weak magnetic field. Its large g factor of the upper state A2Π1/2 is advantageous for magneto-optical trapping. Finally, by studying Stark effect of BaF in the X2Σ1/2+, we investigate the dependence of the internal effective electric field on the applied electric field. It is suggested that such a laser-cooled BaF is also a promising candidate for precision measurement of electron electric dipole moment.
Keywords:  laser cooling      magneto-optical trapping      BaF radical  
Received:  10 November 2016      Revised:  07 December 2016      Accepted manuscript online: 
PACS:  37.10.Mn (Slowing and cooling of molecules)  
  37.10.Pq (Trapping of molecules)  
  32.10.Fn (Fine and hyperfine structure)  
  32.60.+i (Zeeman and Stark effects)  
Fund: Project supported by the National Natural Science Foundation of China (Grant Nos. 91536218, 11374100, 10904037, 10974055, 11034002, and 11274114), the National Key Basic Research and Development Program of China (Grant No. 2011CB921602), and the Natural Science Foundation of Shanghai Municipality, China (Grant No. 13ZR1412800).
Corresponding Authors:  Jian-Ping Yin     E-mail:  jpyin@phy.ecnu.edu.cn

Cite this article: 

Liang Xu(许亮), Bin Wei(魏斌), Yong Xia(夏勇), Lian-Zhong Deng(邓联忠), Jian-Ping Yin(印建平) BaF radical: A promising candidate for laser cooling and magneto-optical trapping 2017 Chin. Phys. B 26 033702

[1] Chu S 1998 Rev. Mod. Phys. 70 685
[2] Ketterle W 2002 Rev. Mod. Phys. 74 1131
[3] Carr L D, DeMille D, Krems R V and Ye J 2009 New J. Phys. 11 055049
[4] Jin D S and Ye J 2012 Chem. Rev. 112 4801
[5] Hu Z K, Ke Y, Deng X B, Zhou Z B and Luo J 2012 Chin. Phys. Lett. 29 080401
[6] Hudson E R, Lewandowski H J, Sawyer B C and Ye J 2006 Phys. Rev. Lett. 96 143004
[7] Bishop A I, Wang L and Barker P F 2010 New J. Phys. 12 073028
[8] Xia Y, Yin Y L, Ji X and Yin J P 2012 Chin. Phys. Lett. 29 053701
[9] Narevicius E, Libson A, Parthey C G, Chavez I, Narevicius J, Even U and Raizen M G 2008 Phys. Rev. A 77 051401(R)
[10] Rangwala S A, Junglen T, Rieger T, Pinkse P W H and Rempe G 2003 Phys. Rev. A 67 043406
[11] Weinstein J D, deCarvalho R, Guillet T, Friedrich B and Doyle J M 1998 Nature 395 148
[12] Sage J M, Sainis S, Bergeman T and DeMille D 2005 Phys. Rev. Lett. 94 203001
[13] Liu W L, Wu J Z, Ma J, Xiao L T and Jia S T 2014 Chin. Phys. B 23 013301
[14] Ni K K, et al. 2008 Science 322 231
[15] Li J, Liu Y, Huang Y and Cong S L 2015 Chin. Phys. B 24 080308
[16] Prehn A, Ibrügger M, Glöckner R, Rempe G and Zeppenfeld M 2016 Phys. Rev. Lett. 116 063005
[17] Di RosaM D 2004 Eur. Phys. J. D 31 395
[18] Yeo M, Hummon M T, Collopy A L, Yan B, Hemmerling B, Chae E, Doyle J M and Ye J 2015 Phys. Rev. Lett. 114 223003
[19] Shuman E S, Barry J F and DeMille D 2010 Nature 467 820
[20] Barry J F, McCarron D J, Norrgard E B, Steinecker M H and DeMille D 2014 Nature 512 286
[21] Hemmerling B, Chae E, Ravi A, Anderegg L, Drayna G K, Hutzler N R, Collopy A L, Ye J, Ketterle W and Doyle J M 2016 J. Phys. B 49 174001
[22] Truppe S, Williams H, Hambach M, Fitch N, Wall T E, Hinds E A, Sauer B E and Tarbutt M R 2016 arXiv:1605.06055
[23] Yin Y N, Xia Y, Li X J, Yang X X, Xu S P and Yin J P 2015 Appl. Phys. Express 8 092701
[24] Yang R, Tang B and Gao T 2016 Chin. Phys. B 25 043101
[25] Kozyryev I, Baum L, Matsuda K, Hemmerling B and Doyle J M 2016 J. Phys. B 49 134002
[26] Wilkinson P G 1963 Astrophys. J. 138 778
[27] Barrow R F, Bernard A, Effantin C, D'incan J, Fabre G, Hachimi AE, Stringat R and Verges J 1988 Chem. Phys. Lett. 147 535
[28] Effantin C, Bernard A, D'incan J, Wannous G, Verges J and Barrow R F 1990 Mol. Phys. 70 735
[29] Bernard A, Effantin C, D'incan J, Verges J and Barrow R F 1990 Mol. Phys. 70 747
[30] Bernard A, Effantin C, Andrianavalona E, Verges J and Barrow R F 1992 J. Mol. Spectrosc. 152 174
[31] Berg L E, Gador N, Husain D, Ludwigs H and Royen P 1998 Chem. Phys. Lett. 287 89
[32] Kozlov M G, Titov A V, Mosyagin N S and Souchko P V 1997 Phys. Rev. A 56 R3326
[33] Nayak M K, Chaudhuri R K and Das B P 2007 Phys. Rev. A 75 022510
[34] Nayak M K and Chaudhuri R K 2008 Phys. Rev. A 78 012506
[35] Borschevsky A, Ilias M, Dzuba V A, Flambaum V V and Schwerdtfeger P 2013 Phys. Rev. A 88 022125
[36] Vutha A C, et al. 2010 J. Phys. B 43 074007
[37] Quemener G and Bohn J L 2016 Phys. Rev. A 93 012704
[38] Kang S Y, Kuang F G, Jiang G and Du J G 2016 Mol. Phys. 114 810
[39] Born M and Oppenheimer R 1927 Ann. Phys. 389 457
[40] Ryzlewicz C and Torring T 1980 Chem. Phys. 51 329
[41] Huber K P and Herzberg G 2005 Molecular Spectra and Molecular Structure IV: Constants of Diatomic Molecules (Van Rostrand-Reinhold)
[42] Nicholls R W 1981 Astrophys. J. Suppl. Ser. 47 279
[43] Morse P M 1929 Phys. Rev. 34 57
[44] Rees A L G 1947 Proc. Phys. Soc. 59 998
[45] Chen T, Bu W H and Yan B 2016 arXiv:1609.07707
[46] Tarbutt M R, Sauer B E, Hudson J J and Hinds E A 2013 New J. Phys. 15 053034
[47] Hudson J J, Kara D M, Smallman I J, Sauer B E, Tarbutt M R and Hinds E A 2011 Nature 473 493
[48] The ACME Collaboration, et al. 2014 Science 343 269
[49] Brown J H and Carrington A 2003 Rotational Spectroscopy of Diatomic Molecules (Cambridge University Press)
[50] Steimle T C, Frey S, Le A, DeMille D, Rahmlow D A and Linton C 2011 Phys. Rev. A 84 012508
[51] Zare R N 1988 Angular Momentum: Understanding Spatial Aspects in Chemistry and Physics (New York: Wiley)
[52] Frosch R A and Foley H M 1952 Phys. Rev. 88 1337
[53] Ernst W E, Kandler J and Torring T 1986 J. Chem. Phys. 84 4769
[54] Curl Jr R F1965 Mol. Phys. 9 585
[55] Tarbutt M R 2015 New J. Phys. 17 015007
[56] Nakagawa J, Domaille P J, Steimle T C and Harris D O 1978 J. Mol. Spectrosc. 70 374
[57] Steimle T C, Domaille P J and Harris D O 1978 J. Mol. Spectrosc. 73 441
[58] Bernard A and Gravina R 1983 Astrophys. J. Suppl. Ser. 52 443
[59] Norrgard E B, McCarron D J, Steinecker M H, Tarbutt M R and DeMille D 2016 Phys. Rev. Lett. 116 063004
[60] Sushkov O P and Flambaum V V 1978 Sov. Phys. JETP 48 608
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