Literature DB >> 33077590

Optical signatures of multifold fermions in the chiral topological semimetal CoSi.

Bing Xu1, Zhenyao Fang2, Miguel-Ángel Sánchez-Martínez3, Jorn W F Venderbos4,5,6, Zhuoliang Ni4, Tian Qiu2, Kaustuv Manna7, Kefeng Wang8, Johnpierre Paglione8,9, Christian Bernhard1, Claudia Felser7,9, Eugene J Mele4, Adolfo G Grushin3, Andrew M Rappe2, Liang Wu10.   

Abstract

We report the optical conductivity in high-quality crystals of the chiral topological semimetal CoSi, which hosts exotic quasiparticles known as multifold fermions. We find that the optical response is separated into several distinct regions as a function of frequency, each dominated by different types of quasiparticles. The low-frequency intraband response is captured by a narrow Drude peak from a high-mobility electron pocket of double Weyl quasiparticles, and the temperature dependence of the spectral weight is consistent with its Fermi velocity. By subtracting the low-frequency sharp Drude and phonon peaks at low temperatures, we reveal two intermediate quasilinear interband contributions separated by a kink at 0.2 eV. Using Wannier tight-binding models based on first-principle calculations, we link the optical conductivity above and below 0.2 eV to interband transitions near the double Weyl fermion and a threefold fermion, respectively. We analyze and determine the chemical potential relative to the energy of the threefold fermion, revealing the importance of transitions between a linearly dispersing band and a flat band. More strikingly, below 0.1 eV our data are best explained if spin-orbit coupling is included, suggesting that at these energies, the optical response is governed by transitions between a previously unobserved fourfold spin-3/2 node and a Weyl node. Our comprehensive combined experimental and theoretical study provides a way to resolve different types of multifold fermions in CoSi at different energy. More broadly, our results provide the necessary basis to interpret the burgeoning set of optical and transport experiments in chiral topological semimetals.

Entities:  

Keywords:  multifold fermions; optical conductivity; topological semimetal

Year:  2020        PMID: 33077590      PMCID: PMC7959492          DOI: 10.1073/pnas.2010752117

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  38 in total

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Authors:  Guoqing Chang; Su-Yang Xu; Benjamin J Wieder; Daniel S Sanchez; Shin-Ming Huang; Ilya Belopolski; Tay-Rong Chang; Songtian Zhang; Arun Bansil; Hsin Lin; M Zahid Hasan
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9.  Two-Dimensional Conical Dispersion in ZrTe_{5} Evidenced by Optical Spectroscopy.

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10.  Giant topological longitudinal circular photo-galvanic effect in the chiral multifold semimetal CoSi.

Authors:  Zhuoliang Ni; K Wang; Y Zhang; O Pozo; B Xu; X Han; K Manna; J Paglione; C Felser; A G Grushin; F de Juan; E J Mele; Liang Wu
Journal:  Nat Commun       Date:  2021-01-08       Impact factor: 14.919

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  2 in total

1.  Chirality locking charge density waves in a chiral crystal.

Authors:  Geng Li; Haitao Yang; Peijie Jiang; Cong Wang; Qiuzhen Cheng; Shangjie Tian; Guangyuan Han; Chengmin Shen; Xiao Lin; Hechang Lei; Wei Ji; Ziqiang Wang; Hong-Jun Gao
Journal:  Nat Commun       Date:  2022-05-25       Impact factor: 17.694

2.  Giant topological longitudinal circular photo-galvanic effect in the chiral multifold semimetal CoSi.

Authors:  Zhuoliang Ni; K Wang; Y Zhang; O Pozo; B Xu; X Han; K Manna; J Paglione; C Felser; A G Grushin; F de Juan; E J Mele; Liang Wu
Journal:  Nat Commun       Date:  2021-01-08       Impact factor: 14.919

  2 in total

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