DOAJ Open Access 2022

Spin-triplet superconductivity in Weyl nodal-line semimetals

Tian Shang Sudeep K. Ghosh Michael Smidman Dariusz Jakub Gawryluk Christopher Baines +12 lainnya

Abstrak

Abstract Topological semimetals are three dimensional materials with symmetry-protected massless bulk excitations. As a special case, Weyl nodal-line semimetals are realized in materials having either no inversion or broken time-reversal symmetry and feature bulk nodal lines. The 111-family, including LaNiSi, LaPtSi and LaPtGe materials (all lacking inversion symmetry), belongs to this class. Here, by combining muon-spin rotation and relaxation with thermodynamic measurements, we find that these materials exhibit a fully-gapped superconducting ground state, while spontaneously breaking time-reversal symmetry at the superconducting transition. Since time-reversal symmetry is essential for protecting the normal-state topology, its breaking upon entering the superconducting state should remarkably result in a topological phase transition. By developing a minimal model for the normal-state band structure and assuming a purely spin-triplet pairing, we show that the superconducting properties across this family can be described accurately. Our results demonstrate that the 111 materials reported here provide an ideal test-bed for investigating the rich interplay between the exotic properties of Weyl nodal-line fermions and unconventional superconductivity.

Penulis (17)

T

Tian Shang

S

Sudeep K. Ghosh

M

Michael Smidman

D

Dariusz Jakub Gawryluk

C

Christopher Baines

A

An Wang

W

Wu Xie

Y

Ye Chen

M

Mukkattu O. Ajeesh

M

Michael Nicklas

E

Ekaterina Pomjakushina

M

Marisa Medarde

M

Ming Shi

J

James F. Annett

H

Huiqiu Yuan

J

Jorge Quintanilla

T

Toni Shiroka

Format Sitasi

Shang, T., Ghosh, S.K., Smidman, M., Gawryluk, D.J., Baines, C., Wang, A. et al. (2022). Spin-triplet superconductivity in Weyl nodal-line semimetals. https://doi.org/10.1038/s41535-022-00442-w

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Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.1038/s41535-022-00442-w
Akses
Open Access ✓