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拓扑半金属ZrSiSe器件中面内霍尔效应的观测
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作者 韦博元 步海军 +1 位作者 张帅 宋凤麒 《物理学报》 SCIE EI CAS CSCD 北大核心 2019年第22期236-243,F0004,共9页
拓扑半金属中的手性反常通常是用负磁阻来检测.然而,手性反常导致的负磁阻对磁场和电流的夹角比较敏感,这给测量带来了挑战.最近,作为一种新兴实验手段,面内霍尔效应被越来越多地应用于拓扑半金属中手性反常的探测.本文通过将拓扑Nodal-... 拓扑半金属中的手性反常通常是用负磁阻来检测.然而,手性反常导致的负磁阻对磁场和电流的夹角比较敏感,这给测量带来了挑战.最近,作为一种新兴实验手段,面内霍尔效应被越来越多地应用于拓扑半金属中手性反常的探测.本文通过将拓扑Nodal-line半金属ZrSiSe块体机械剥离制备成的介观器件,对其面内霍尔效应进行了测量并探究其起源.尽管测量数据与拓扑半金属中手性反常导致的面内霍尔效应理论公式拟合得很好,但各向异性磁电阻的分析结果表明,负磁阻并不存在.更进一步地,根据最近报道提出手性反常存在的判据,在一个手性反常主导的系统中,以磁场和电流夹角为参数的Rxx-Ryx关系曲线呈现为随磁场变化的一系列同心圆,而在本文ZrSiSe器件的输运实验中,表现为非同心圆的形式.结合分析,本文排除了手性反常的存在,并推断各向异性磁电阻才是其面内霍尔效应的起因. 展开更多
关键词 拓扑半金属 面内霍尔效应 手性反常
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QCD Chiral Phase Transition and Its Microscopic Origin
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作者 DING Hengtong 《原子核物理评论》 CAS CSCD 北大核心 2024年第1期109-116,共8页
The transition of strong-interaction matter from the hadronic phase to the quark-gluon plasma phase is a rapid crossover but not a true phase transition in nature.The true phase transition of strong-interaction matter... The transition of strong-interaction matter from the hadronic phase to the quark-gluon plasma phase is a rapid crossover but not a true phase transition in nature.The true phase transition of strong-interaction matter is expected to exist only in certain limits,e.g.chiral limit of massless quarks and etc.In this contribution to CNPC2023 Special Issue we present our recent studies on the true phase transition of strong-interaction matter in the chiral limit of massless quarks as well as its microscopic origin.The study is based on(2+1)-flavor lattice QCD simulations using highly improved staggered fermions,with pion masses ranging from 160 MeV down to 55 MeV.Utilizing a newly proposed method to compute the quark mass derivatives of the Dirac eigenvalue spectrum on the lattice,it is found that the axial U(1)anomaly is still manifested at 1.6T_(c),with a microscopic origin consistent with the dilute instanton gas approximation.Furthermore,based on lattice QCD results and a generalized Banks-Casher relation,it is found that the macroscopic singularity of the chiral phase transition is encoded in the correlation of the Dirac eigenvalue spectrum.Future research directions along these findings are also discussed,including the investigation of the temperature range between T_(c) and 1.6 T_(c) to understand the breakdown of the dilute instanton gas approximation and its connection to the chiral phase transition. 展开更多
关键词 QCD phase structure Dirac eigenvalue spectrum axial anomaly chiral symmetry CRITICALITY
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