论文标题
模拟HEP-TH-在狄拉克材料上和一般而言
Analog hep-th, on Dirac materials and in general
论文作者
论文摘要
说明了我们小组在像石墨烯一样在狄拉克材料上复制高能理论物理方案的工作。本文的主要目的是解释这些系统的用途多功能,以及我们可以与它们一起探索的Hep The领域的范围。我首先回顾了为什么这些材料为特殊的相对论物质和空间的出现而兴奋,重点是曲率的出现。然后解释了低维度(2+1)和Weyl对称性的关键作用,以实现现象的异常(以及其他有趣的场景,其中包括BTZ黑洞和DE Sitter Spacetime)的关键作用。评论我们也提供了在实验方向上走多远的评论,随后列出了一些新鲜的结果:从时间循环到发现扭转,再到从基础(晶格)长度的概括的不确定性原理;从晶粒构造的模型及其关系到(a)DS和庞加莱时空代数,到非常规的超对称性以及两个石墨烯的两个狄拉克点的作用;还有更多。在总结的评论中,我简要尝试为实现``类似物的cern''的理论上的理论家。 HEP-TH-MAT和COND-MAT类型都位于实验者旁边,主要是Cond-Mat类型。
The work of our group on reproducing scenarios of high energy theoretical physics on Dirac materials, like graphene, is illustrated. The main goal of this paper is to explain how versatile these systems are, and how far and wide into the hep-th territory we can explore with them. I first review why these materials lend themselves to the emergence of special relativistic-like matter and space, with the focus on the emergence of curvature. Then the crucial role of the low dimensions (2+1), and Weyl symmetry, towards the realization of a Unruh-kind of phenomenon (along with other interesting scenarios, that include the BTZ black hole and de Sitter spacetime) is explained. Comments on how far we went in the direction of experiments are offered too, followed by a list of some fresh results: From the time-loop to spot torsion, to the generalized uncertainty principle stemming from and underlying (lattice) length; From a model of grain-boundaries and their relation to (A)dS and Poincaré spacetime algebras, to Unconventional Supersymmetry and the role of the two Dirac points of graphene; and more. In the concluding remarks I briefly try to make the case for the realization of a ``CERN for analogs'', where theorists. both of the hep-th and of the cond-mat types, sit next to experimentalists, mostly of the cond-mat type.