TY - JOUR
T1 - Pressure-induced superconductivity in topological semimetal NbAs2
AU - Li, Yupeng
AU - An, Chao
AU - Hua, Chenqiang
AU - Chen, Xuliang
AU - Zhou, Yonghui
AU - Zhou, Ying
AU - Zhang, Ranran
AU - Park, Changyong
AU - Wang, Zhen
AU - Lu, Yunhao
AU - Zheng, Yi
AU - Yang, Zhaorong
AU - Xu, Zhu An
N1 - Publisher Copyright:
© 2018, The Author(s).
PY - 2018/12/1
Y1 - 2018/12/1
N2 - Topological superconductivity with Majorana bound states, which are critical to implement nonabelian quantum computation, may be realized in three-dimensional semimetals with nontrivial topological feature, when superconducting transition occurs in the bulk. Here, we report pressure-induced superconductivity in a transition-metal dipnictide NbAs2. The emergence of superconductivity is not accompanied by any structural phase transition up to the maximum experimental pressure of 29.8 GPa, as supported by pressure-dependent synchrotron X-ray diffraction and Raman spectroscopy. Intriguingly, the Raman study reveals rapid phonon mode hardening and broadening above 10 GPa, in coincident with the superconducting transition. Using first-principle calculations, we determine Fermi surface change induced by pressure, which steadily increases the density of states without breaking the electron–hole compensation. Noticeably, the main hole pocket of NbAs2 encloses one time-reversal-invariant momenta of the monoclinic lattice, suggesting NbAs2 as a candidate of topological superconductors.
AB - Topological superconductivity with Majorana bound states, which are critical to implement nonabelian quantum computation, may be realized in three-dimensional semimetals with nontrivial topological feature, when superconducting transition occurs in the bulk. Here, we report pressure-induced superconductivity in a transition-metal dipnictide NbAs2. The emergence of superconductivity is not accompanied by any structural phase transition up to the maximum experimental pressure of 29.8 GPa, as supported by pressure-dependent synchrotron X-ray diffraction and Raman spectroscopy. Intriguingly, the Raman study reveals rapid phonon mode hardening and broadening above 10 GPa, in coincident with the superconducting transition. Using first-principle calculations, we determine Fermi surface change induced by pressure, which steadily increases the density of states without breaking the electron–hole compensation. Noticeably, the main hole pocket of NbAs2 encloses one time-reversal-invariant momenta of the monoclinic lattice, suggesting NbAs2 as a candidate of topological superconductors.
UR - https://www.scopus.com/pages/publications/85057152257
U2 - 10.1038/s41535-018-0132-1
DO - 10.1038/s41535-018-0132-1
M3 - 文章
AN - SCOPUS:85057152257
SN - 2397-4648
VL - 3
JO - npj Quantum Materials
JF - npj Quantum Materials
IS - 1
M1 - 58
ER -