论文标题
尺寸降低的超黄的热相结构 - 米尔
Thermal phase structure of dimensionally reduced super-Yang--Mills
论文作者
论文摘要
我们通过对贝伦斯坦(Maldacena)的晶格调查(Maldacena) - 最大超对称阳形 - 米尔斯量子力学的变形。我们专注于该理论的热相结构,该理论取决于温度$ t $和变形参数$μ$,通过无量纲比率$ t /μ$和$ g =λ /μ^3 $,$λ$ the thoft hooft耦合。我们确定了跨三个数量级的耦合$ g $的关键$ t /μ$,以连接弱耦合扰动计算和大$ n $ n $双$双$双重超级重力预测。分析多个晶格尺寸最大$n_τ= 24 $,最多$ n = 16 $的颜色数量可以对大的$ n $ continuum limit进行初始检查。
We present our current results from ongoing lattice investigations of the Berenstein--Maldacena--Nastase deformation of maximally supersymmetric Yang--Mills quantum mechanics. We focus on the thermal phase structure of this theory, which depends on both the temperature $T$ and the deformation parameter $μ$, through the dimensionless ratios $T / μ$ and $g = λ/ μ^3$ with $λ$ the 't Hooft coupling. We determine the critical $T / μ$ of the confinement transition for couplings $g$ that span three orders of magnitude, to connect weak-coupling perturbative calculations and large-$N$ dual supergravity predictions in the strong-coupling limit. Analyzing multiple lattice sizes up to $N_τ = 24$ and numbers of colors up to $N = 16$ allows initial checks of the large-$N$ continuum limit.