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中国科学院“东方”超级计算系统助力格点QCD研究(图)
东方超级计算系统 量子色动力学
2022/10/28
“东方”超级计算系统是中国科学院新一代超级计算机。基于该系统的强大算力,LPC合作组完成了最大3亿格点数的大规模模拟计算,为量子多体问题中高能物理实验密切关注的物理量作出第一性原理预言提供了证实数据。
2019年7月17至25日,QCD物理暨基金委重大项目“量子色动力学的相结构和新颖拓扑效应研究”年度学术交流会(Workshop on QCD Physics & Study of the QCD Phase Diagram and New-type Topologic Effect)在山东大学威海国际学术中心举行。中国科学院院士、北京大学赵光达教授,中国科学院院士、中科院理论物理研究所张肇西教授...
为促进国内粒子物理理论和实验领域的交流合作,4月12至14日,山东大学物理学院理论物理研究所与中国科学院大学、济南大学联合举办了QCD与重味物理前沿问题研讨会,来自国内多所知名高校和研究机构的70余位专家学者参加了会议。开幕式上,中国科学院理论物理研究所张肇西院士致开幕辞。山东大学物理学院党委书记郁鹏致欢迎辞。本次会议的主要目的是就微扰QCD、重味物理、对撞机物理、Higgs物理、强子物理、标准模...
QCD condensates for the light quark V-A correlator
Energy decay data electroweak penguin operators
2014/12/20
We use the procedure of pinched-weight finite energy sum rules to determine the operator product expansion (OPE) coefficients a6,…,a16 of the flavor ud V-A correlator in terms of existing hadronic τ d...
第二届“强磁场下的QCD真空和物质”研讨会于2014年10月15日至17日在中国科学院高能物理研究所举行。本次会议由复旦大学、南京大学、华中师范大学、中国科学技术大学、中国科学院高能物理研究所及中国高等科学技术中心联合举办,由高能所和大科学装置理论物理研究中心承办。来自美国、德国、日本及国内二十三个高校,研究所的50余名专家及青年学者参加了会议。会议共提交了19个学术报告。
“强磁场下的QCD真空和物质”研讨会在高能所举办
强磁场 真空 物质
2013/5/3
“强磁场下的QCD真空和物质”研讨会于4月29日至30日在高能物理研究所举行。本次会议由华中师范大学、中国科学技术大学及中国科学院高能物理研究所将联合举办,由高能所和大科学装置理论物理研究中心承办。国内外二十六个高校,研究所的60余名专家及青年学者参加了会议。
The talk, based on [1], analyzes the consequences of the assumption that the effects of quantum coherence and the resulting angular ordering in QCD cascades are disrupted within the hot fireball creat...
Symmetry energy of dense matter in holographic QCD
Symmetry energy dense matter holographic QCD
2010/12/24
We study the nuclear symmetry energy of dense matter using holographic QCD. To this end, we consider two flavor branes with equal quark masses in a D4/D6/D6 model. We find that at high density the sym...
QCD under magnetic field: chiral magnetic effect at heavy ion collisions
chiral-magnetic eect vector-current correlation charge separation
2011/1/10
In this talk, we report our recent studies for the chiral magnetic eect, which signals the P- and CP-violations at heavy ion collisions. We compute the electric current and its correlations, induced ...
Running coupling constant of ten-flavor QCD with the Schrödinger functional method
Running coupling constant ten-flavor QCD Schrö dinger functional method
2011/1/14
Walking technicolor theory attempts to realize electroweak symmetry breaking as the spontaneous
chiral symmetry breakdown caused by the gauge dynamics with slowly varying gauge coupling constant and ...
Lattice QCD at the physical point: light quark masses
Lattice QCD physical point light quark masses
2011/1/7
Ordinary matter is described by six fundamental parameters: three couplings (gravitational,
electromagnetic and strong) and three masses: the electron’s (me) and those of the up (mu)
and down (md) q...
OPE, Heavy-Quark Mass, and Heavy-Meson Decay Constants from QCD Sum Rules
OPE Heavy-Quark Mass Heavy-Meson Decay Constants from QCD Sum Rules
2011/1/7
We present a sum-rule extraction of the decay constants of heavy-lightmesons from the two-point
correlator of pseudoscalar currents [1]. To this end, we compare the perturbative expansions for the co...
Wave Functions of the Proton Ground State in the Presence of a Uniform Background Magnetic Field in Lattice QCD
Wave Functions of the Proton Ground State Uniform Background Magnetic Field
2011/1/13
We calculate the probability distributions of quarks in the ground state of the proton, and how
they are aected in the presence of a constant background magnetic eld. We focus on wave functions in ...
Quark masses with Nf=2 twisted mass lattice QCD
Quark masses Nf=2 twisted mass lattice QCD
2011/1/13
We present the results of the recent high precision lattice calculation of the average up/down,
strange and charm quarkmasses performed by ETMC with Nf =2 twisted massWilson fermions.
The analysis i...
Non-linear QCD dynamics and exclusive production
Non-linear QCD dynamics exclusive production
2011/1/5
In this contribution we analyse the cross sections for the exclusive vector meson production as
well as the deeply virtual Compton scattering (DVCS) relying on the color dipole approach and
consider...