迪拉克费米子
螺旋狄拉克费米子
物理
费米子
费米子倍增
Dirac(视频压缩格式)
狄拉克海
狄拉克旋量
无质量粒子
狄拉克方程
类型(生物学)
量子力学
生态学
生物
中微子
作者
Tian-Chi Ma,Jing-Nan Hu,Yuan Chen,Liang Shao,Xian-Ru Hu,Jie Deng
标识
DOI:10.1142/s0217984921501815
摘要
Relativistic massless Weyl and Dirac fermions have isotropic and linear dispersion relations to maintain Poincaré symmetry, which is the most basic symmetry in high-energy physics. The situation in condensed matter physics is less constrained; only certain subgroups of Poincaré symmetry — the 230 space groups that exist in 3D lattices — need be respected. Then, the free fermionic excitations that have no high-energy analogues could exist in solid state systems. Here, We discovered a type of nonlinear Dirac fermion without high-energy analogue in SrAgBi and named it type-IV Dirac fermion. The type-IV Dirac fermion has a nonlinear dispersion relationship and is similar to the type-II Dirac fermion, which has electron pocket and hole pocket. The effective model for the type-IV Dirac fermion is also found. It is worth pointing out that there is a type-II Dirac fermion near this new Dirac fermion. So we used two models to describe the coexistence of these two Dirac fermions. Topological surface states of these two Dirac points are also calculated. We envision that our findings will stimulate researchers to study novel physics of type-IV Dirac fermions, as well as the interplay of type-II and type-IV Dirac fermions.
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