English

A minimal, "hydrogen atom" version of an inversion-breaking Weyl semimetal

Mesoscale and Nanoscale Physics 2016-10-07 v1

Abstract

The recent explosion of research interest in Weyl semimetals has led to many proposed Weyl semimetal candidates and a few experimental observations of a Weyl semimetal in real materials. Through this experience, we have come to appreciate that typical Weyl semimetals host many Weyl points. For instance, the first Weyl semimetal observed in experiment, TaAs, hosts 24 Weyl points. Similarly, the Mox_xW1x_{1-x}Te2_2 series, recently under study as the first Type II Weyl semimetal, has eight Weyl points. However, it is well-understood that for a Weyl semimetal without inversion symmetry but with time-reversal symmetry, the minimum number of Weyl points is four. Realizing such a minimal Weyl semimetal is fundamentally relevant because it would offer the simplest "hydrogen atom" example of an inversion-breaking Weyl semimetal. At the same time, transport experiments and device applications may be simpler in a system with as few Weyl points as possible. Recently, TaIrTe4_4 has been predicted to be a minimal, inversion-breaking Weyl semimetal. However, crucially, the Weyl points and Fermi arcs live entirely above the Fermi level, making them inaccessible to conventional angle-resolved photoemission spectroscopy (ARPES). Here we use pump-probe ARPES to directly access the band structure above the Fermi level in TaIrTe4_4. We directly observe Weyl points and topological Fermi arcs, showing that TaIrTe4_4 is a Weyl semimetal. We find that, in total, TaIrTe4_4 has four Weyl points, providing the first example of a minimal inversion-breaking Weyl semimetal. Our results hold promise for accessing exotic transport phenomena arising in Weyl semimetals in a real material.

Keywords

Cite

@article{arxiv.1610.02013,
  title  = {A minimal, "hydrogen atom" version of an inversion-breaking Weyl semimetal},
  author = {Ilya Belopolski and Peng Yu and Daniel S. Sanchez and Yukiaki Ishida and Tay-Rong Chang and Songtian S. Zhang and Su-Yang Xu and Daixiang Mou and Hao Zheng and Guoqing Chang and Guang Bian and Horng-Tay Jeng and Takeshi Kondo and Adam Kaminski and Hsin Lin and Zheng Liu and Shik Shin and M. Zahid Hasan},
  journal= {arXiv preprint arXiv:1610.02013},
  year   = {2016}
}