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Exploring instantons in nonlinear sigma models with spin-lattice systems

机译:用旋转格子系统探索非线性SIGMA模型的瞬间

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摘要

Instanton processes are present in a variety of quantum field theories relevant to high energy as well as condensed matter physics. While they have led to important theoretical insights and physical applications, their underlying features often remain elusive due to the complicated computational treatment. Here, we address this problem by studying topological as well as nontopological instantons using Monte Carlo methods on lattices of interacting spins. As a proof of principle, we systematically construct instanton solutions in O(3) nonlinear sigma models with a Dzyaloshinskii-Moriya interaction in (1 + 1) and (1+2) dimensions, thereby resembling an example of a chiral magnet. We demonstrate that, due to their close correspondence. Monte Carlo techniques in spin-lattice systems are well suited to describe topologically nontrivial field configurations in these theories. In particular, by means of simulated annealing, we demonstrate how to obtain domain walls, merons, and critical instanton solutions.
机译:instanton过程存在于与高能量相关的各种量子域理论中,以及凝聚态物理学。虽然它们导致重要的理论上见解和物理应用,但由于复杂的计算治疗,他们的潜在特征通常仍然难以难以捉摸。在这里,我们通过在相互作用的旋转的格子上研究蒙特卡罗方法,通过研究拓扑和非本质学算子来解决这个问题。作为原理的证据,我们系统地构建了在O(3)非线性SIGMA模型中的算子解决方案,其中Dzyaloshinskii-Moriya相互作用(1 + 1)和(1 + 2)尺寸,从而类似于手性磁体的示例。我们证明,由于他们的密切对应。旋转晶格系统中的蒙特卡罗技术非常适合在这些理论中描述这些理论中的拓扑非学生场配置。特别地,通过模拟退火,我们演示了如何获得域墙,MERONS和关键的INSTANTON解决方案。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第14期|144436.1-144436.10|共10页
  • 作者单位

    Institute for Particle Physics Phenomenology Department of Physics Durham University Durham DH1 3LE United Kingdom;

    Institute for Particle Physics Phenomenology Department of Physics Durham University Durham DH1 3LE United Kingdom;

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