Bulletin of the American Physical Society
2024 APS March Meeting
Monday–Friday, March 4–8, 2024; Minneapolis & Virtual
Session W03: 2D Materials: Superconductivity, Ferroelectricity, Density Waves, and Other Correlated States I
3:00 PM–6:00 PM,
Thursday, March 7, 2024
Room: L100C
Sponsoring
Units:
DMP DCMP
Chair: Guo Yu, Princeton University
Abstract: W03.00002 : Unconventional superconducting phase in NbSe2-based misfit layered superconductor
3:36 PM–3:48 PM
Presenter:
Yuki Itahashi
(Department of Applied Physics, The University of Tokyo; RIKEN)
Authors:
Yuki Itahashi
(Department of Applied Physics, The University of Tokyo; RIKEN)
Yamato Nohara
(Department of Applied Physics, The University of Tokyo)
Michiya Chazono
(Department of Physics, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan)
Hideki Matsuoka
(The University of Tokyo)
Koichiro Arioka
(Research Institute for Interdisciplinary Science, Okayama University, Okayama 700-8530, Japan)
Tetsuya Nomoto
(The Institute for Solid State Physics, The University of Tokyo,)
Yoshimitsu Kohama
(The Institute for Solid State Physics, The University of Tokyo)
Youichi Yanase
(Kyoto Univ)
Yoshihiro Iwasa
(Univ of Tokyo)
Kaya Kobayashi
(Okayama Univ)
In this work, we report transport properties of misfit layered superconductor composed of NbSe2. In this material, trilayer NbSe2 layers are separated by PbSe block layers. Firstly, we found that the superconducting transition temperature is close to the exfoliated trilayer NbSe2. Secondly, we observed an anomaly in temperature dependence of in-plane upper critical field, which suggests the unconventional superconductivity in low-temperature and high-magnetic-field region. Since this anomaly is absent in bulk and exfoliated trilayer NbSe2 [4,5], we assume that PbSe block layers play crucial role in the emergence of unconventional superconducting phase in the present system.
[1] A. Devarakonda et al., Science 370, 231 (2020).
[2] P. Samuely et al., PRB 104, 224507 (2021).
[3] N. Ng and T. M. McQueen, APL Mater. 10, 100901 (2022).
[4] X. Xi et al., Nat. Phys. 12, 139 (2016).
[5] E. Sohn et al., Nat. Commun. 17, 504 (2018).
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