Non-commutative probability insights into the double-scaling limit SYK Model with constant perturbations: moments, cumulants, and $q$-independence

Shuang Wu
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Abstract

Extending the results of \cite{Wu}, we study the double-scaling limit SYK (DSSYK) model with an additional diagonal matrix with a fixed number $c$ of nonzero constant entries $\theta$. This constant diagonal term can be rewritten in terms of Majorana fermion products. Its specific formula depends on the value of $c$. We find exact expressions for the moments of this model. More importantly, by proposing a moment-cumulant relation, we reinterpret the effect of introducing a constant term in the context of non-commutative probability theory. This gives rise to a $\tilde{q}$ dependent mixture of independences within the moment formula. The parameter $\tilde{q}$, derived from the q-Ornstein-Uhlenbeck (q-OU) process, controls this transformation. It interpolates between classical independence ($\tilde{q}=1$) and Boolean independence ($\tilde{q}=0$). The underlying combinatorial structures of this model provide the non-commutative probability connections. Additionally, we explore the potential relation between these connections and their gravitational path integral counterparts.
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对具有恒定扰动的双缩放极限 SYK 模型的非交换概率洞察:矩、累积量和 $q$-independence
我们扩展了吴文俊的研究成果,研究了双尺度极限SYK(DSSYK)模型,该模型有一个额外的对角矩阵,其中有固定数量的非零常数项$c$(theta$)。这个常数对角项可以用马约拉纳费米子乘积来重写。它的具体公式取决于 $c$ 的值。我们找到了这个模型矩的精确表达式。更重要的是,通过提出矩积关系,我们在非交换概率论的背景下重新解释了引入常数项的效果。这就在矩公式中产生了一个依赖于 $\tilde{q}$ 的独立混合物。从q-Ornstein-Uhlenbeck(q-OU)过程导出的参数$\tilde{q}$控制着这一转变。它介于经典独立性($\tilde{q}=1$)和布尔独立性($\tilde{q}=0$)之间。该模型的基本组合结构提供了非交换概率联系。此外,我们还探讨了这些联系与其引力路径积分对应物之间的潜在关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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