BEVITOR·伟德(中国)有限公司

{dede:global.cfg_webname/}
  • English
  • 官方微信
  • 首页
  • 栏目名称
    • 测试
  • 第二个
  • 首页
  • 关于我们
    • BEVITOR伟德简介
    • 历史沿革
    • 机构设置
    • 现任领导
    • 历任领导
    • 联系我们
  • 师资队伍
    • 全职教工
    • 讲座 兼职教授
    • 重要人才计划
    • 退休人员名单
  • 人才培养
    • 本科生培养
    • 硕士生培养
    • 博士生培养
  • 科学研究
    • 学术交流
    • 重点学科
    • 科研机构
    • 科研团队
    • 科研成果
    • 讨论班
  • 党团建设
    • 党建动态
    • 工会活动
    • 团学工作
  • 理论学习
    • 主题教育
  • 合作交流
    • 国际合作
    • 校际合作
    • 校企合作
  • 招生就业
    • 招生信息
    • 就业信息
    • 招生宣传
  • 校友之家
    • 校友组织
    • 校友基金
    • 校友活动
    • 百年院庆
  • 院务信箱

学术交流

  • 学术交流
  • 重点学科
  • 科研机构
  • 科研团队
  • 科研成果
  • 讨论班

学术交流

Chiral soliton lattice in quark matter under extreme conditions

日期:2023-05-30  来源:BEVITOR伟德  点击:[]

报告题目:Chiral soliton lattice in quark matter under extreme conditions

主讲人:Tomáš Brauner教授

单位:挪威斯塔凡格大学

时间:5月31日17:00

ZOOMID:210-089-8623

密码:123456

摘要:The lightest hadrons observed in nature are pseudoscalar mesons: the pions. These can be viewed as quark-antiquark bound states and therefore have vanishing baryon number; they do not constitute matter in the usual sense. However, as proposed long ago by Skyrme, baryon number can emerge effectively as a topological charge, carried by topologically nontrivial pion field configurations. The formation of such solitons – the skyrmions – is associated with a characteristic energy scale, corresponding to the scale of the nucleon mass. In this talk, I will introduce a novel phase of quark matter where a topologically realized baryon number appears at low energies, provided a suitable external field is present. Indeed, I will show that in sufficiently strong magnetic fields, a one-dimensional soliton lattice carrying baryon number becomes the ground state of quantum chromodynamics. The basic theoretical description of this Chiral Soliton Lattice (CSL) phase is very well known, and relies on the mathematics of a simple pendulum. I will discuss to some extent the spectrum of fluctuations of the CSL state and the effect of these fluctuations on the phase diagram. In the last part of the talk, I will give an overview of related work on the realizations of the CSL phase in quark matter under a variety of external conditions.

简介:Tomáš Brauner is a professor of physics at Stavanger University, Norway and has been a postdoc at the Nuclear Physics Institute, The Academy of Sciences of the Czech Republic (2006-2011), at Frankfurt University, Germany (2007-2010), at Bielefeld University, Germany (2010-2013), at Helsinki University, Finland (2013-2014), at TU Wien, Austria (2014-2015). Brauner is an expert on Nambu-Goldstone bosons in quantum many-body systems, superfluids, quarkyonic phases of matter, the inverse Higgs effect and especially the chiral soliton lattice. Brauner has published 6 letters in Phys.Rev.Lett. (PRL) (127 citations) and over 50 paperss in JHEP, Phys.Rev.D, Phys.Rev.B, Phys.Lett.B, Nucl.Phys.B, Nucl.Phys.A, J.Phys.G, Annals Phys., Mod.Phys.Lett.A, Eur.Phys.J.C., Eur.Phys.J.A, Phys.Scripta, Symmetry with more than 1300 citations.

上一条:The number of rational points of a family of hypersurfaces over finite fields 下一条:Population dynamics of the giant jellyfish Nemopilema nomurai with age structure

【关闭】

友情链接

  • 学校教务处
  • 学校党委办公室
  • 学校校长办公室
  • 清华大学数学系
  • 浙江大学数学科学院
  • 上海大学数学系
版权所有:BEVITOR·伟德(中国)有限公司