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New linearization and reweighting for simulations of string sigma-model on the lattice

机译:晶格上弦Σ模型模拟的新线性化与重新重量

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A bstract We study the discretized worldsheet of Type IIB strings in the Gubser-Klebanov-Polyakov background in a new setup, which eliminates a complex phase previously detected in the fermionic determinant. A sign ambiguity remains, which a study of the fermionic spectrum shows to be related to Yukawa-like terms, including those present in the original Lagrangian before the linearization standard in a lattice QFT approach. Monte Carlo simulations are performed in a large region of the parameter space, where the sign problem starts becoming severe and instabilities appear due to the zero eigenvalues of the fermionic operator. To face these problems, simulations are conducted using the absolute value of a fermionic Pfaffian obtained introducing a small twisted-mass term, acting as an infrared regulator, into the action. The sign of the Pfaffian and the low modes of the quadratic fermionic operator are then taken into account by a reweighting procedure of which we discuss the impact on the measurement of the observables. In this setup we study bosonic and fermionic correlators and observe a divergence in the latter, which we argue — also via a one-loop analysis in lattice perturbation theory — to originate from the U(1)-breaking of our Wilson-like discretization for the fermionic sector.
机译:Bstract我们在一个新的设置中研究Gubser-Klebanov-Polyakov背景中的IIB型串的离散世界各地,其消除了先前在FEMIONIC决定因素中检测到的复杂阶段。符号歧义仍然存在,对费偶元谱的研究表明与yukawa样术语有关,包括在格子QFT方法中线性化标准之前在原来拉格朗日中存在的那些。 Monte Carlo模拟在参数空间的大区域中进行,其中标志问题开始变得严重,并且由于FEMIONIC操作员的零特征值而出现不稳定性。为了面对这些问题,使用获得的Fermionic PFaffian的绝对值进行仿真,以引入小型扭曲符号,作为红外调节器的作用。然后,通过重量处理程序考虑了PFaffian和二次Fermionic操作员的低模式的标志,我们讨论了对可观察到测量的影响。在这个设置中,我们研究了博源和铁饼的相关器,并观察了后者的分歧 - 我们争论 - 也通过格子扰动理论的单环分析 - 源于我们的威尔逊的武器,就像我们的威尔逊一样的分散化Fermionic Sector。

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