论文标题
QCD物质的磁敏感性及其分解晶格
Magnetic susceptibility of QCD matter and its decomposition from the lattice
论文作者
论文摘要
我们使用带有物理质量的交错夸克通过第一原理晶格模拟来确定热QCD物质的磁敏感性。采用了一种新的方法,仅需要在零背景字段上进行模拟,从而规避与磁通量量化有关的问题。经过仔细的连续性限制外推后,在低温下发现磁磁行为(负易感性),高温下强烈的顺磁性(正敏感性)。我们重新审视磁敏感性分解为自旋和轨道角动量相关的贡献。与温度下的光子灯酮分布振幅的归一化相关的自旋项是非扰动和外推到连续限量的。我们既可以访问完整的磁化率又可以使用自旋项,因此首次计算轨道角动量贡献。结果揭示了基于免费费米的图片可能预期的反面。我们提供了可以在现象学研究中使用的QCD状态方程的温度和磁场方程的简单参数化。
We determine the magnetic susceptibility of thermal QCD matter by means of first principles lattice simulations using staggered quarks with physical masses. A novel method is employed that only requires simulations at zero background field, thereby circumventing problems related to magnetic flux quantization. After a careful continuum limit extrapolation, diamagnetic behavior (negative susceptibility) is found at low temperatures and strong paramagnetism (positive susceptibility) at high temperatures. We revisit the decomposition of the magnetic susceptibility into spin- and orbital angular momentum-related contributions. The spin term -- related to the normalization of the photon lightcone distribution amplitude at zero temperature -- is calculated non-perturbatively and extrapolated to the continuum limit. Having access to both the full magnetic susceptibility and the spin term, we calculate the orbital angular momentum contribution for the first time. The results reveal the opposite of what might be expected based on a free fermion picture. We provide a simple parametrization of the temperature- and magnetic field-dependence of the QCD equation of state that can be used in phenomenological studies.