Bulletin of the American Physical Society
2024 APS March Meeting
Monday–Friday, March 4–8, 2024; Minneapolis & Virtual
Session A16: Emerging Superconductors: Field, Strain, and Pressure Effects
8:00 AM–10:48 AM,
Monday, March 4, 2024
Room: M100G
Sponsoring
Unit:
DCMP
Chair: Dominic Alfonso, National Energy Technology Laboratory
Abstract: A16.00003 : Pressure-induced superconductivity in bi-layer nickelate La3Ni2O7+δ
8:24 AM–8:36 AM
Presenter:
Ueki Yuta
(National Institute for Materials Science (NIMS))
Authors:
Ueki Yuta
(National Institute for Materials Science (NIMS))
Hiroya Sakurai
(National Institute for Materials Science (NIMS))
Hibiki Nagata
(National Institute for Materials Science (NIMS))
Ryo Matsumoto
(National Institute for Materials Science (NIMS))
Kensei Terashima
(National Institute for Materials Science (NIMS))
Hirose Keisuke
(Doshisha University)
Hiroto Ohta
(Doshisha University)
Masaki Kato
(Doshisha University)
Yoshihiko Takano
(National Institute for Materials Science (NIMS))
Parent single-phase La3Ni2O7 were synthesized by solid state reaction and then annealed in air or in high-pressure oxygen. The oxygen contents of samples were evaluated by thermogravimetry. Electrical resistance measurements under high pressure were performed using PPMS and Diamond anvil cell with boron-doped diamond electrodes [3]. Cubic boron nitride was used as a pressure medium.
In the sample of annealed in high pressure oxygen, the electrical resistance decreased over the whole temperature range with increasing pressure, and superconducting transition appears at 26.1 GPa with Tc = 78 K. Compared to the previous work [1], appearance of superconductivity is about 10 GPa higher, and the decrease in Tc with increasing pressure is more pronounced. This result suggests that superconducting properties of La3Ni2O7 may depend on oxygen content. In the presentation, we will also report the results of resistivity measurements on samples that were annealed in air.
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