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In this article, we take the $Y(4260/4220)$ as the vector tetraquark state with $J^{PC}=1^{--}$, and construct the $C\gamma_5\otimes\stackrel{\leftrightarrow}{\partial}_\mu\otimes \gamma_5C$ type diquark-antidiquark current to study its mass and pole residue with the QCD sum rules in details by taking into account the vacuum condensates up to dimension 10 in a consistent way.
M. A. Shifman, A. I. Vainshtein and V. I. Zakharov, Nucl. Phys. B147
1979
Earlier work this paper cites.
P. Pascual and R. Tarrach, “QCD: Renormalization for the practitioner”, Springer Berlin Heidelberg (1984)
1984
Earlier work this paper cites.
L. J. Reinders, H. Rubinstein and S. Yazaki, Phys. Rept. 127
1985
Earlier work this paper cites.
H. G. Dosch, M. Jamin and B. Stech, Z. Phys. C42
1990
Earlier work this paper cites.
B. Aubert et al, Phys. Rev. Lett. 95
2005
Earlier work this paper cites.
L. Maiani, V. Riquer, F. Piccinini and A. D. Polosa, Phys. Rev. D72
2005
Earlier work this paper cites.
S. L. Zhu, Phys. Lett. B625
2005
Earlier work this paper cites.
Q. He et al, Phys. Rev. D74
2006
Earlier work this paper cites.
C. F. Qiao, Phys. Lett. B639
2006
Earlier work this paper cites.
Z. G. Wang anf S. L. Wan, Chin. Phys. Lett. 23
2006
Earlier work this paper cites.
C. Z. Yuan et al, Phys. Rev. Lett. 99
2007
Earlier work this paper cites.
S. Narison and R. Tarrach, Phys. Lett. 125 B
2007
Earlier work this paper cites.
Z. G. Wang, Eur. Phys. J. C59
2009
Earlier work this paper cites.
J. R. Zhang and M. Q. Huang, JHEP 1011
2010
Earlier work this paper cites.
J. R. Zhang and M. Q. Huang, Phys. Rev. D83
2011
Earlier work this paper cites.
R. M. Albuquerque and M. Nielsen, Nucl. Phys. A815
2011
Cited alongside, same era.
W. Chen and S. L. Zhu, Phys. Rev. D83
2011
Cited alongside, same era.
L. Liu et al, JHEP 07
2012
Cited alongside, same era.
J. M. Dias, R. M. Albuquerque, M. Nielsen and C. M. Zanetti, Phys. Rev. D86
2012
Cited alongside, same era.
L. Tang and X. Q. Li, Chin. Phys. C36
2012
Cited alongside, same era.
A. Martinez Torres, K. P. Khemchandani, D. Gamermann and E. Oset, Phys. Rev. D80
2013
Cited alongside, same era.
Z. G. Wang, Eur. Phys. J. C71
2013
Cited alongside, same era.
Z. G. Wang and T. Huang, Eur. Phys. J. C74
2014
Later among the works it cites.
M. Ablikim et al, Phys. Rev. Lett. 114
2015
Later among the works it cites.
Z. G. Wang, Eur. Phys. J. C76
2016
Later among the works it cites.
D. Y. Chen, J. He and X. Liu, Phys. Rev. D83
2016
Later among the works it cites.
Z. G. Wang and T. Huang, Nucl. Phys. A930
2016
Later among the works it cites.
Z. G. Wang, Eur. Phys. J. C76
2016
Later among the works it cites.
Z. G. Wang, Chin. Phys. C41
2017
Later among the works it cites.
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Z. G. Wang, Commun. Theor. Phys. 59
2013
Cited alongside, same era.
L. Maiani, F. Piccinini, A. D. Polosa and V. Riquer, Phys. Rev. D89
2014
Cited alongside, same era.
S. J. Brodsky, D. S. Hwang and R. F. Lebed, Phys. Rev. Lett. 113
2014
Cited alongside, same era.
E. Braaten, C. Langmack and D. Hudson Smith, Phys. Rev. D90
2014
Cited alongside, same era.
X. Li and M. B. Voloshin, Mod. Phys. Lett. A29
2014
Cited alongside, same era.
M. Ablikim et al, Phys. Rev. Lett. 118
2017
Later among the works it cites.
M. Ablikim et al, Phys. Rev. Lett. 118
2017
Later among the works it cites.
Z. G. Wang, Eur. Phys. J. C77
2017
Later among the works it cites.
Z. G. Wang, Eur. Phys. J. A53
2017
Later among the works it cites.
A. Ali, L. Maiani, A. V. Borisov, I. Ahmed, M. Jamil Aslam, A. Y. Parkhomenko, A. D. Polosa and A. Rehma, Eur. Phys. J. C78
2018
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Z. G. Wang, Eur. Phys. J. C78
2018
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M. Tanabashi et al, Phys. Rev. D98
2018
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A. De Rujula, H. Georgi and S. L. Glashow, Phys. Rev. D12
2060
Closest in time.