Causal structure of interacting Weyl fermions in condensed matter systems

Wei Chi Chiu, Guoqing Chang, Gennevieve Macam, Ilya Belopolski, Shin Ming Huang, Robert Markiewicz, Jia Xin Yin, Zi Jia Cheng, Chi Cheng Lee, Tay Rong Chang, Feng Chuan Chuang, Su Yang Xu, Hsin Lin, M. Zahid Hasan, Arun Bansil

研究成果: Article同行評審

3 引文 斯高帕斯(Scopus)

摘要

The spacetime light cone is central to the definition of causality in the theory of relativity. Recently, links between relativistic and condensed matter physics have been uncovered, where relativistic particles can emerge as quasiparticles in the energy-momentum space of matter. Here, we unveil an energy-momentum analogue of the spacetime light cone by mapping time to energy, space to momentum, and the light cone to the Weyl cone. We show that two Weyl quasiparticles can only interact to open a global energy gap if they lie in each other’s energy-momentum dispersion cones–analogous to two events that can only have a causal connection if they lie in each other’s light cones. Moreover, we demonstrate that the causality of surface chiral modes in quantum matter is entangled with the causality of bulk Weyl fermions. Furthermore, we identify a unique quantum horizon region and an associated ‘thick horizon’ in the emergent causal structure.

原文English
文章編號2228
期刊Nature communications
14
發行號1
DOIs
出版狀態Published - 2023 12月

All Science Journal Classification (ASJC) codes

  • 一般化學
  • 一般生物化學,遺傳學和分子生物學
  • 一般物理與天文學

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