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相关论文: Applying Complex Langevin to Lattice QCD at finite…

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We simulate lattice QCD at finite quark-number chemical potential, $\mu$, using the complex-Langevin equation (CLE) with gauge-cooling and adaptive updating to prevent instabilities. The CLE is used because QCD at finite $\mu$ has a complex…

高能物理 - 格点 · 物理学 2018-10-30 D. K. Sinclair , J. B. Kogut

QCD at finite quark-/baryon-number density, which describes nuclear matter, has a sign problem which prevents direct application of standard simulation methods based on importance sampling. When such finite density is implemented by the…

高能物理 - 格点 · 物理学 2016-11-09 D. K. Sinclair , J. B. Kogut

We simulate lattice QCD at finite quark-number chemical potential to study nuclear matter, using the complex Langevin equation (CLE). The CLE is used because the fermion determinant is complex so that standard methods relying on importance…

高能物理 - 格点 · 物理学 2018-04-18 D. K. Sinclair , J. B. Kogut

We study the use of the complex-Langevin equation (CLE) to simulate lattice QCD at a finite chemical potential ($\mu$) for quark-number, which has a complex fermion determinant that prevents the use of standard simulation methods based on…

高能物理 - 格点 · 物理学 2019-10-02 J. B. Kogut , D. K. Sinclair

QCD at non-zero chemical potential ($\mu$) for quark number has a complex fermion determinant and thus standard simulation methods for lattice QCD cannot be applied. We therefore simulate this theory using the Complex-Langevin algorithm…

高能物理 - 格点 · 物理学 2015-10-22 D. K. Sinclair , J. B. Kogut

Lattice QCD at non-vanishing chemical potential is studied using the complex Langevin equation (CLE). One of the conditions for the correctness of the results of the CLE is that the zeroes of the measure coming from the fermionic…

高能物理 - 格点 · 物理学 2016-11-10 G. Aarts , E. Seiler , D. Sexty , I. -O. Stamatescu

QCD at a finite quark-number chemical potential $\mu$ has a complex fermion determinant, which precludes its study by standard lattice QCD simulations. We therefore simulate lattice QCD at finite $\mu$ in the phase-quenched approximation,…

高能物理 - 格点 · 物理学 2008-11-26 J. B. Kogut , D. K. Sinclair

Quantum chromodynamics (QCD) at sufficiently high density is expected to undergo a chiral phase transition. Understanding such a transition is of particular importance for neutron star or quark star physics. In Lagrangian SU(3) lattice…

高能物理 - 格点 · 物理学 2009-11-07 Yi-Zhong Fang , Xiang-Qian Luo

We present a method of simulating lattice QCD at nonzero chemical potential in the chiral limit. By adding a weak four-fermi interaction to the standard staggered fermion SU(3) QCD action, we produce an algorithm in which the limit of…

高能物理 - 格点 · 物理学 2009-10-28 I. M. Barbour , S. E. Morrison , John B. Kogut

At sufficiently high temperature and density, quantum chromodynamics (QCD) is expected to undergo a phase transition from the confined phase to the quark-gluon plasma phase. In the Lagrangian lattice formulation the Monte Carlo method works…

高能物理 - 格点 · 物理学 2009-10-31 E. B. Gregory , S. Guo , H. Kroger , Xiang-Qian Luo

We present lattice simulations on the phase diagram of Quantum Chromodynamics (QCD) with two light quark flavours at finite chemical potential $\mu$. To circumvent the sign problem we use the complex Langevin method. In this study, we have…

高能物理 - 格点 · 物理学 2022-03-25 Felipe Attanasio , Benjamin Jäger , Felix P. G. Ziegler

We demonstrate that the complex Langevin method (CLM) enables calculations in QCD at finite density in a parameter regime in which conventional methods, such as the density of states method and the Taylor expansion method, are not…

高能物理 - 格点 · 物理学 2020-12-02 Yuta Ito , Hideo Matsufuru , Yusuke Namekawa , Jun Nishimura , Shinji Shimasaki , Asato Tsuchiya , Shoichiro Tsutsui

We simulate 3-flavour lattice QCD at finite quark-number chemical potential mu in the phase-quenched approximation, close to the finite temperature transition. Working close to the critical quark mass, we find no evidence for the expected…

高能物理 - 格点 · 物理学 2009-04-14 D. K. Sinclair , J. B. Kogut

We simulate two-flavour lattice QCD with at a finite chemical potential $\mu_I$ for isospin, and finite temperature. At small $\mu_I$, we determine the position of the crossover from hadronic matter to a quark-gluon plasma as a function of…

高能物理 - 格点 · 物理学 2014-11-17 J. B. Kogut , D. K. Sinclair

The complex Langevin method is extended to full QCD at non-zero chemical potential. The use of gauge cooling stabilizes the simulations at small enough lattice spacings. At large fermion mass the results are compared to the HQCD approach,…

高能物理 - 格点 · 物理学 2014-03-19 Denes Sexty

Determining the QCD phase diagram is a pressing task in view of its relevance for nuclear and astro-particle physics programmes. We review the current status of lattice calculations of the phase diagram in the (T,\mu_B)-plane for baryon…

高能物理 - 唯象学 · 物理学 2009-01-14 Owe Philipsen

At sufficiently high temperature and density, quantum chromodynamics (QCD) predicts phase transition from the hadronic phase to the quark-gluon plasma phase. Lattice QCD is the most useful tool to investigate this critical phenomenon, which…

高能物理 - 唯象学 · 物理学 2017-08-23 Xiang-Qian Luo , Eric B. Gregory , Shuo-Hong Guo , Helmut Kroger

We simulate lattice QCD with an irrelevant chiral 4-fermion interaction which allows us to simulate at zero quark mass. This enables us to study the finite-temperature chiral-symmetry-restoring phase transition for 2 massless quark…

高能物理 - 格点 · 物理学 2007-05-23 J. B. Kogut , D. K. Sinclair

We study the deconfinement transition line in QCD for quark chemical potentials up to $\mu_q \sim 5 T$ ($\mu_B \sim 15 T$). To circumvent the sign problem we use the complex Langevin equation with gauge cooling. The plaquette gauge action…

高能物理 - 格点 · 物理学 2020-08-05 M. Scherzer , D. Sexty , I. -O. Stamatescu

We study quenched QCD at finite chemical potential, $\mu_I$, for the third component of isospin and quenched two-colour QCD at finite chemical potential, $\mu$, for quark number. In contrast to the quenched approximation to QCD at finite…

高能物理 - 格点 · 物理学 2009-11-07 J. B. Kogut , D. K. Sinclair
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