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WANG Fan, PING Jialun, HUANG Hongxia. Progress in the Study of Multi-quark States[J]. Nuclear Physics Review, 2017, 34(1): 1-7. doi: 10.11804/NuclPhysRev.34.01.001
Citation: WANG Fan, PING Jialun, HUANG Hongxia. Progress in the Study of Multi-quark States[J]. Nuclear Physics Review, 2017, 34(1): 1-7. doi: 10.11804/NuclPhysRev.34.01.001

Progress in the Study of Multi-quark States

doi: 10.11804/NuclPhysRev.34.01.001
Funds:  National Natural Science Foundation of China(11675080, 11535005, 11205091)
  • Received Date: 2016-10-18
  • Publish Date: 2017-03-20
  • The progress in the study of multi-quark states for the last half century is reviewed schematically and the dibaryon sector is emphasized. By employing the dynamical symmetry, the Gursey-Radicati mass formula, which can give a reasonable description of the masses of multi-quark states, can be reproduced. The dibaryons in bag model and realistic quark model, quark delocalization color screening model, are discussed.
  • [1] GELL-MANN M. Phys Lett, 1964, 8: 214; ZWEIG G. 1964, CERN 1964 Report TH-401,402.
    [2] DYSON F J, XUONG N H. Phys Rev Lett, 1964, 13: 815.
    [3] GURSEY F, RADICATI L A. Phys Rev Lett, 1964, 13: 173.
    [4] KAMAE T, ARAI I, FUJⅡ T, et al. Phys Rev Lett, 1977, 38: 468; IKEDA H, ARAI I, FUJⅡ T, et al. Phys Rev Lett, 1979, 42: 1321.
    [5] KAMAE T, FUJITA T. Phys Rev Lett, 1977, 38: 471; MULDERS PJ G, AERTS A T, DE SWART J J. Phys Rev Lett, 1978, 40: 1543; WONG C W, LIU K F. Phys Rev Lett, 1978, 41: 82.
    [6] JAFFE R L. Phys Rev Lett, 1977, 38: 195.
    [7] SETH K K. Proc. Baryon-Baryon Interaction and Dibaryonic Systems, Bad Honnef, 1988: p.41; Few body Systems, 2009, 45: 85.
    [8] BILGER R, CLEMENT H A, SHCHEPKIN M G. Phys Rev Lett, 1993, 71: 42; 1994, 72: 2792; PING J L, WANG F, GOLDMAN T. Phys Rev C, 2000, 62: 054007.
    [9] NAKANO T, AHN D S, AHN J K, et al. Phys Rev Lett, 1993, 91: 012002.
    [10] MCKINNON B, HICKS K, BALTZELL N A, et al. Phys Rev Lett, 2006, 96: 212001.
    [11] BASHKANOV M, BARGHOLTZ C, BERTOWSKI M, et al. Phys Rev Lett, 2009, 102: 052301; 2011, 106: 242302; 2014, 112: 202301.
    [12] GOLDMAN T, MALTMAN K, STEPHENSON G J, et al. Phys Rev C, 1989, 39: 1889; WANG F, Wu G H, TENG L J, GOLDMAN T. Phys Rev Lett, 1992, 69: 2901; PING J L, HUANG H X, PANG H R, et al. Phys Rev C, 2009, bf 79: 024001; HUANG H X, PING J L, DENG C R, WANG F. Phys Rev C, 2014, 90: 064003.
    [13] CHEN H X, CHEN W, LIU X, ZHU S L. Phys Report, 2016, 639: 1.
    [14] ARIMA A, ICHELLO F. Phys Rev Lett, 1975, 35: 1069.
    [15] CHEN J Q, PING J L, WANG F. Group representation theory for physicists[M]. Singapore:World Scientific, 2002.
    [16] ASHMAN J, BADELEK B, BAUM G, et al. Phys Lett B, 1988, 206: 364.
    [17] QING D, CHEN X S, WANG F. Phys Rev D, 1998, 58: 114032.
    [18] ADLARSON P, AUGUSTYNIAK, BARDAN W, et al. arXiv: 1606.02964[nucl-ex].
    [19] CHODOS A, JAFFE R L, JOHNSON K, et al. Phys Rev D, 1974, 9: 3471.
    [20] AERTS A T M, MULDERS P J G, DE SWART J J. Phys Rev D, 1978, 17: 260; 1980, 21: 1370, 2653.
    [21] BEANE S R, CHANG E, DETMOLD W, et al. Phys Rev Lett, 2011, 106: 162001; INOUE T, ISHⅡ N, AOKI S, et al (HAL QCD collaboration), Phys Rev Lett, 2011, 106: 162002.
    [22] HAN Y C, AHN J K, BASSALLECK B, et al. JPS Conf Proc, 2015, 8: 021002.
    [23] SHANAHAN P E, THOMAS A W, YONG R D. Phys Rev lett, 2011, 107: 092004.
    [24] VALVARCE A, GARCILAZO H, FERNANDEZ F, GONZALEZ P. Rep Prog Phys, 2005, 68: 965.
    [25] BASHKANOV M, BRODSKY S J, CLEMENT H. Phys Lett B, 2013, B727: 438.
    [26] ARNDT R A, ROPER L D, WORKMAN R L, et al. Phys Rev D, 1992, 45: 3995; Phys Rev C, 2000, 62: 034005.
    [27] GOLDMAN T, MALTMAN K, STEPHENSON G J, et al. Phys Rev Lett, 1987, 59: 627; HUANG H X, PING J L, WANG F. Phys Rev C, 2015, 92: 065202.
    [28] ETMINAN F, NEMURA H, AOKI S, et al. Nucl Phys A, 2014, 928: 89.
    [29] DOI T, AOKI S, GONGYO S, et al. arXiv: 1512.04199 [heplat].
    [30] SASAKI K, AOKI S, DOI T, et al. 2016, PoS LATTICE 2015: 088.
    [31] IKEDA Y, AOKI S, DOI T, et al. (HAL QCD collaboration). arXiv: 1602.03465 [hep-lat].
    [32] WANG F, WONG C W. Nuovo Cimento A, 1985, 86: 283; WANG F. Progress in Phys. 1989, 9: 297 (in chinese).
    [33] HUANG H X, XU P, PING J L, WANG F. Phys Rev C, 2011, 84: 064001; JI C R. J Phys, 2014, 543: 012004.
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Progress in the Study of Multi-quark States

doi: 10.11804/NuclPhysRev.34.01.001
Funds:  National Natural Science Foundation of China(11675080, 11535005, 11205091)

Abstract: The progress in the study of multi-quark states for the last half century is reviewed schematically and the dibaryon sector is emphasized. By employing the dynamical symmetry, the Gursey-Radicati mass formula, which can give a reasonable description of the masses of multi-quark states, can be reproduced. The dibaryons in bag model and realistic quark model, quark delocalization color screening model, are discussed.

WANG Fan, PING Jialun, HUANG Hongxia. Progress in the Study of Multi-quark States[J]. Nuclear Physics Review, 2017, 34(1): 1-7. doi: 10.11804/NuclPhysRev.34.01.001
Citation: WANG Fan, PING Jialun, HUANG Hongxia. Progress in the Study of Multi-quark States[J]. Nuclear Physics Review, 2017, 34(1): 1-7. doi: 10.11804/NuclPhysRev.34.01.001
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