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相关论文: Singularities of QCD in the complex chemical poten…

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Partition function zeros provide alternative approach to study phase structure of finite density QCD. The structure of the Lee-Yang edge singularities associated with the zeros in the complex chemical potential plane has a strong influence…

高能物理 - 格点 · 物理学 2014-09-18 Shinji Ejiri , Yasuhiko Shinno , Hiroshi Yoneyama

We study the Yang-Lee zeros of a random matrix partition function with the global symmetries of the QCD partition function. We consider both zeros in the complex chemical potential plane and in the complex mass plane. In both cases we find…

高能物理 - 格点 · 物理学 2008-11-26 M. A. Halasz , A. D. Jackson , J. J. M. Verbaarschot

A new approach is presented to explore the singularity structure of lattice QCD at imaginary chemical potential. Our method can be seen as a combination of the Taylor expansion and analytic continuation approaches. Its novelty lies in using…

A new approach is presented to explore the singularity structure of lattice QCD in the complex chemical potential plane. Our method can be seen as a combination of the Taylor expansion and analytic continuation approaches. Its novelty lies…

The thermodynamic singularities of QCD in the plane of complex baryo-chemical potential mu are studied. Predictions are made using scaling and universality arguments in the vicinity of the massless quark limit. The results are illustrated…

高能物理 - 格点 · 物理学 2009-11-11 M. A. Stephanov

We take the Dyson-Schwinger Equation approach of QCD for the quark propagator at complex chemical potential to study the QCD phase transition. The phase transition line of the $(2+1)$-flavor QCD matter in the imaginary chemical potential…

高能物理 - 唯象学 · 物理学 2024-08-20 Zi-Yan Wan , Yi Lu , Fei Gao , Yu-Xin Liu

We present a calculation of the net baryon number density as a function of imaginary baryon number chemical potential, obtained with highly improved staggered quarks (HISQ) at temporal lattice extent of $N_\tau=4,6$. We construct various…

高能物理 - 格点 · 物理学 2022-03-08 P. Dimopoulos , L. Dini , F. Di Renzo , J. Goswami , G. Nicotra , C. Schmidt , S. Singh , K. Zambello , F. Ziesché

We consider thermodynamic singularities appearing in the complex chemical potential plane in the vicinity of QCD critical point. In order to investigate what the singularities are like in a concrete form, we resort to an effective theory…

高能物理 - 格点 · 物理学 2013-11-26 Shinji Ejiri , Yasuhiko Shinno , Hiroshi Yoneyama

We report Lee-Yang zeros behavior at finite temperature and density. The quark number densities, <n>, are calculated at the pure imaginary chemical potential, where no sign problem occurs. Then, the canonical partition functions,…

高能物理 - 格点 · 物理学 2019-04-24 M. Wakayama , V. G. Bornyakov , D. L. Boyda , V. A. Goy , H. Iida , A. V. Molochkov , A. Nakamura , V. I. Zakharov

Using $N_f=2+1$ QCD calculations at physical quark mass and purely imaginary baryon chemical potential, we locate Lee-Yang edge singularities in the complex chemical potential plane. These singularities have been obtained by the multi-point…

高能物理 - 格点 · 物理学 2024-05-21 D. A. Clarke , P. Dimopoulos , F. Di Renzo , J. Goswami , C. Schmidt , S. Singh , K. Zambello

Some consequences of the analyticity of the free energy (pressure) of QCD at finite chemical potential are deduced. These include a method for numerical exploration of the full phase diagram by a novel use of simulations at imaginary…

高能物理 - 格点 · 物理学 2009-11-10 Sourendu Gupta

The $Q$-state Potts model on the simple-cubic lattice is studied using the zeros of the exact partition function on a finite lattice. The critical behavior of the model in the ferromagnetic and antiferromagnetic phases is discussed based on…

统计力学 · 物理学 2015-06-24 Seung-Yeon Kim

The Bielefeld Parma Collaboration has in recent years put forward a method to probe finite density QCD by the detection of Lee-Yang singularities. The location of the latter is obtained by multi-point Pad\`e approximants, which are in turn…

高能物理 - 格点 · 物理学 2024-05-21 F. Di Renzo , D. A. Clarke , P. Dimopoulos , J. Goswami , C. Schmidt , S. Singh , K. Zambello

The canonical partition functions $Z_n$ and the number distributions $P_n$ which are obervable in experiments, are related by a single parameter, the fugacities $\xi=\exp(\mu/T)$. With the charge parity invariance, $Z_n$ and $\xi$ can be…

高能物理 - 唯象学 · 物理学 2018-01-16 Atsushi Nakamura , Keitaro Nagata

We discuss the phase structure and the equation of state for QCD at non-zero temperature and density. Derivatives of $\ln Z$ with respect to quark chemical potential $\mu_q$ up to fourth order are calculated for 2-flavor QCD, enabling…

We explore the distribution of Lee-Yang zeros around the critical point that appears in the heavy-quark region of QCD at nonzero temperature in lattice numerical simulations. With the aid of the hopping-parameter expansion that is well…

高能物理 - 唯象学 · 物理学 2025-03-31 Masakiyo Kitazawa , Tatsuya Wada , Kazuyuki Kanaya

The canonical approach for finite density lattice QCD has a numerical instability. This instability makes it difficult to use the method reliably at the finite real chemical potential region. We studied this instability in detail and found…

高能物理 - 格点 · 物理学 2015-11-18 Shotaro Oka , for Zn-Collaboration

We present results of the location of the closest singularities in the complex chemical potential plane using a novel method. These results are obtained with (2+1)-flavor of highly improved staggered quarks (HISQ) on lattices with temporal…

The analytic structure of the partition function in finite-volume systems is investigated at complex chemical potentials in a minimal mean-field effective model of QCD with finite-size effects incorporated. We discuss the temperature…

高能物理 - 唯象学 · 物理学 2026-05-20 Tatsuya Wada , Győző Kovács , Masakiyo Kitazawa , Takahiro M. Doi

Canonical partition functions and Lee-Yang zeros of QCD at finite density and high temperature are studied. Recent lattice simulations have confirmed that the free energy of QCD is a quartic function of quark chemical potential at…

高能物理 - 格点 · 物理学 2015-05-27 Keitaro Nagata , Kouji Kashiwa , Atsushi Nakamura , Shinsuke M. Nishigaki
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