高级检索

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

色味连锁夸克物质中的涡旋

彭富平 吴云奔 张小兵

彭富平, 吴云奔, 张小兵. 色味连锁夸克物质中的涡旋[J]. 原子核物理评论, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
引用本文: 彭富平, 吴云奔, 张小兵. 色味连锁夸克物质中的涡旋[J]. 原子核物理评论, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
PENG Fuping, WU Yunben, ZHANG Xiaobing. Vortices in the Color-flavor Locked Quark Matter[J]. Nuclear Physics Review, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
Citation: PENG Fuping, WU Yunben, ZHANG Xiaobing. Vortices in the Color-flavor Locked Quark Matter[J]. Nuclear Physics Review, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133

色味连锁夸克物质中的涡旋

doi: 10.11804/NuclPhysRev.35.02.133
基金项目: 国家自然科学基金资助项目(10875058)
详细信息
    作者简介:

    彭富平(1990-),男,江西丰城人,博士研究生,从事夸克物质的研究;E-mail:penfuping@mail.nankai.edu.cn

    通讯作者: 张小兵,E-mail:zhangxb@nankai.edu.cn
  • 中图分类号: O572.24+3

Vortices in the Color-flavor Locked Quark Matter

Funds: National Natural Science Foundation of China(11175257)
  • 摘要: 夸克物质在不同的温度和重子数密度下表现出丰富的相结构。高密低温情况下,夸克物质的基态是色味连锁相。介绍了金兹堡-朗道理论以及色味连锁夸克物质中的各种涡旋态(特别是准超流涡旋),并讨论了磁场和自转对准超流涡旋的的影响。由于致密星核心内部有可能形成准超流涡旋,这一结果对致密星体的研究具有现实意义。如果将温度、夸克质量等因素考虑在内,研究夸克物质中涡旋结构的性质将为诸如致密星物理实验等相关的领域提供新的视角。


    The quark matter exhibits a rich phase structure at different temperatures and baryon number densities. At high baryon density and low temperature, the color-flavor locked phase is believed to be the ground state of the quark matter. We present an introduction to various vortices in the color-flavor locked quark matter, especially for the semi-superfluid vortices, and their research method (Ginzburg-Landau method). The influence of magnetic field and rotation on properties of these vortices is discussed. Due to the possibility of forming a semi-superfluid vortex in the core of the dense star, this result is of practical significance in the study of dense stars. If considering other factors, such as temperature and quark mass, study of the vortex structure properties in the quark matter could provide new perspectives for related fields, for instance dense star physics.
  • [1] ALFORD M, RAJAGOPAL K, WILCZEK F. Phys Lett B, 1998, 422(1-4):247.
    [2] SHIFMAN M. At The Frontier of Particle Physics:Handbook of QCD[M]. Sinapore:World Scientific, 2001.
    [3] IWASAKI M, IWADO T. Phys Lett B, 1995, 350(2):163.
    [4] RAPP R, SCH T, AUML, SHURYAK E, et al. Phys Rev Lett, 1997, 81:53.
    [5] ALFORD M, SCHMITT A, RAJAGOPAL K, et al. Rev Mod Phys, 2008, 80:1455.
    [6] FUKUSHIMA K, HATSUDA T. Rept Prog Phys, 2010, 74(1):14001.
    [7] RAJAGOPAL K, WILCZEK F. At The Frontier of Particle Physics[M]. Sinapore:World Scentific, 2001
    [8] GIANNAKIS I, REN H C. Nucl Phys B, 2003, 669(3):462.
    [9] MERMIN N D. Rev Mod Phys, 1979, 51(3):591.
    [10] VOLOVIK G E. The Universe in a Helium Droplet[M]. Oxford:Oxford University Press, 2009.
    [11] RAMAN C, ONOFRIO R, VOGELS J M, et al. J Low Temp Phys, 2001, 122(1-2):99.
    [12] ZWIERLEIN M W, ABO-SHAEER J R, SCHIROTZEK A, et al. Nature, 2005, 435(7045):1047.
    [13] PANG L G, PETERSEN H, WANG Q, et al. Phys Rev Lett, 2016, 117(19):192301.
    [14] MINORU E, YUJI H, MUNETO N, et al. Prog Theor Exp Phys, 2014, 2014(1):165.
    [15] LIFSHITZ E M, PITAEVSKⅡ L P. Course of Theoretical Physics:Satistical Physics:Theory of the Condensed State[M]. Sinapore:World Scientific, 1997.
    [16] GIANNAKIS I, REN H C. Phys Rev D, 2002, 65:0504017.
    [17] BALACHANDRAN A P, DIGAL S, MATSUURA T. Phys Rev D, 2012, 73:074009.
    [18] EIJI N, MUNETO N, TAEKO M. Phys Rev D, 2007, 78:045002.
    [19] ETO M, NITTA M. Phys Rev D, 2009, 80:125007.
    [20] IBRAHIM A I, MARKWARDT C B, SWANK J H, et al. Astrophys J, 2004, 609(1):L21.
    [21] KULKARNI S R, FRAIL D A, KASSIM N E, et al. Nature, 1994, 368(6467):129.
    [22] MURAKAMI T, TANAKA Y, KULKARNI S R, et al. Nature,1994, 368(6467):127.
    [23] LAI D, RASIO F, SHAPIRO S. Astrophys J, 1994423(1):344.
    [24] BOCQUET M, BONAZZOLA S, GOURGOULHON E, et al. Astrophys, 1995301(3):757.
    [25] ZHANG X B, BU Z C, PENG F P, et al. Nucl Phys A, 2015, 938:1.
    [26] ANDERSSON N, COMER G L, GROSART K. MNRAS, 2004, 355(3):918.
    [27] SEDRAKIAN D M, BLASCHKE D, SHAHABASYAN K M, et al. Astrophys, 2008, 51:544.
    [28] BEDAQUE P F, BERKOWITZ E, CHERMAN A. Phys Rev D, 2011, 84:023006.
    [29] FERRER E J, INCERA V L. Phys Rev D, 2007, 76:045011.
    [30] FERRER E J, INCERA V L. Phys Rev Lett, 2006, 97:122301.
    [31] ABRIKOSOV A A. Sov Phys JETP, 1957, 5:1174.
  • 加载中
计量
  • 文章访问数:  2287
  • HTML全文浏览量:  195
  • PDF下载量:  117
  • 被引次数: 0
出版历程
  • 收稿日期:  2017-12-28
  • 修回日期:  2018-02-07
  • 刊出日期:  2018-06-20

色味连锁夸克物质中的涡旋

doi: 10.11804/NuclPhysRev.35.02.133
    基金项目:  国家自然科学基金资助项目(10875058)
    作者简介:

    彭富平(1990-),男,江西丰城人,博士研究生,从事夸克物质的研究;E-mail:penfuping@mail.nankai.edu.cn

    通讯作者: 张小兵,E-mail:zhangxb@nankai.edu.cn
  • 中图分类号: O572.24+3

摘要: 夸克物质在不同的温度和重子数密度下表现出丰富的相结构。高密低温情况下,夸克物质的基态是色味连锁相。介绍了金兹堡-朗道理论以及色味连锁夸克物质中的各种涡旋态(特别是准超流涡旋),并讨论了磁场和自转对准超流涡旋的的影响。由于致密星核心内部有可能形成准超流涡旋,这一结果对致密星体的研究具有现实意义。如果将温度、夸克质量等因素考虑在内,研究夸克物质中涡旋结构的性质将为诸如致密星物理实验等相关的领域提供新的视角。


The quark matter exhibits a rich phase structure at different temperatures and baryon number densities. At high baryon density and low temperature, the color-flavor locked phase is believed to be the ground state of the quark matter. We present an introduction to various vortices in the color-flavor locked quark matter, especially for the semi-superfluid vortices, and their research method (Ginzburg-Landau method). The influence of magnetic field and rotation on properties of these vortices is discussed. Due to the possibility of forming a semi-superfluid vortex in the core of the dense star, this result is of practical significance in the study of dense stars. If considering other factors, such as temperature and quark mass, study of the vortex structure properties in the quark matter could provide new perspectives for related fields, for instance dense star physics.

English Abstract

彭富平, 吴云奔, 张小兵. 色味连锁夸克物质中的涡旋[J]. 原子核物理评论, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
引用本文: 彭富平, 吴云奔, 张小兵. 色味连锁夸克物质中的涡旋[J]. 原子核物理评论, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
PENG Fuping, WU Yunben, ZHANG Xiaobing. Vortices in the Color-flavor Locked Quark Matter[J]. Nuclear Physics Review, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
Citation: PENG Fuping, WU Yunben, ZHANG Xiaobing. Vortices in the Color-flavor Locked Quark Matter[J]. Nuclear Physics Review, 2018, 35(2): 133-139. doi: 10.11804/NuclPhysRev.35.02.133
参考文献 (31)

目录

    /

    返回文章
    返回