论文标题
热磁性QCD培养基中中性伪级介子的手性冷凝物和筛选质量
Chiral condensates and screening masses of neutral pseudoscalar mesons in thermomagnetic QCD medium
论文作者
论文摘要
我们指出,非零温度和磁场处的手性冷凝物与通过病房 - 塔卡哈西(Ward-Takahashi)身份的相应两点中性介子相关函数的时空组成符合。中性伪介膜的筛选质量定义为长距离的相应空间相关函数的指数衰变,因此与手性冷凝物的(反)磁催化本质上连接在一起。为了研究此过程,我们进行了$(2+1)$ - QCD的晶格模拟,$ 32^3 \ times n_t $ lattices带有pion Mass $m_π\ simeq 220 $ MEV,在[17,281] $ MEV和磁场强度$ eb \ in [0,2.5] $ geev中具有固定尺度$ t \ in Pertive bace $ t \。我们发现筛选长度,即$π^0 $,$ k^0 $和$η^0_ {s \ bar {s}} $的筛选质量的倒置,结果具有相似的复杂$ eb $和$ t $依赖的相应手性抑制物。尽管发现过渡温度总是随着$ eb $的增长而始终降低,但我们表明,由于磁场的抑制作用对于强子筛选长度和涉及较重夸克的手性冷凝物而变得较少,并且停止以$η^0_^0_ {s \ bar {s}}} $和奇怪的夸张夸克性流性冷凝水。筛查群体和手性冷凝物的复杂$ eb $和$ t依赖性,反映了QCD过渡的交叉性质,归因于海洋和价夸克效应之间的竞争。这些发现对于指导QCD的低能模型和有效理论可能很有用。
We point out that chiral condensates at nonzero temperature and magnetic fields are in strict connection to the space-time integral of corresponding two-point neutral meson correlation functions in the pseudoscalar channel via the Ward-Takahashi identity. Screening masses of neutral pseudoscalar mesons, which are defined as the exponential decay of the corresponding spatial correlation functions in the long distance, thus are intrinsically connected to (inverse) magnetic catalysis of chiral condensates. To study this we performed lattice simulations of $(2+1)$-flavor QCD on $32^3\times N_t$ lattices with pion mass $M_π\simeq 220$ MeV in a fixed scale approach having temperature $T\in[17, 281]$ MeV and magnetic field strength $eB\in[0, 2.5]$ GeV$^2$. We find that screening lengths, i.e. inverses of screening masses of $π^0$, $K^0$ and $η^0_{s\bar{s}}$, turn out to have the similar complex $eB$ and $T$ dependences of the corresponding chiral condensates. Although the transition temperature is found to always decrease as $eB$ grows, we show that the suppression due to magnetic fields becomes less significant for hadron screening length and chiral condensates with heavier quarks involved, and ceases to occur for $η^0_{s\bar{s}}$ and strange quark chiral condensate. The complex $eB$ and $T$ dependences of both screening masses and chiral condensates, reflecting the crossover nature of the QCD transition, are attributed to the competition between sea and valence quark effects. These findings could be useful to guide low-energy models and effective theories of QCD.