Azumi Yashiro, Rahmanto, Kaketo Inami, Kohei Suzuki, Kaede Inoh, Teppei Takahashi, Ryosuke Koizumi, Yohei Kono, Shunichiro Kittaka, Yusei Shimizu, et al. Quantum criticality linked to the suppressed superconducting upper critical field in Ni-doped CeCoIn5. Physical Review Materials. 2024. 8. 8. L081801-1-L081801-6
S. Kittaka, Y. Kono, K. Tsunashima, D. Kimoto, M. Yokoyama, Y. Shimizu, T. Sakakibara, M. Yamashita, and K. Machida. Modulation vector of the Fulde-Ferrell-Larkin-Ovchinnikov state in CeCoIn5 revealed by high-resolution magnetostriction measurements. Physical Review B. 2023. 107. L220505-1-L220505-6
K. Iwasa, K. Suyama, S. Ohira-Kawamura, K. Nakajima, S. Raymond, P. Steffens, A. Yamada, T. D. Matsuda, Y. Aoki, I. Kawasaki, et al. Weyl-Kondo semimetal behavior in the chiral structure phase of Ce3Rh4Sn13. Physical Review Materials. 2023. 7. 1. 014201-1-014201-11
H. Sakai, Y. Tokunaga, S. Kambe, J.-X. Zhu, F. Ronning, J. D. Thompson, H. Kotegawa, H. Tou, K. Suzuki, Y. Oshima, et al. Nested antiferromagnetic spin fluctuations and non-Fermi-liquid behavior in electron-doped CeCo1-xNixIn5. Physical Review B. 2022. 106. 23. 235152-1-235152-8
W. Higemoto, M. Yokoyama, T. U. Ito, T. Suzuki, S. Raymond, and Y. Yanase. Direct measurement of the evolution of magnetism and superconductivity toward the quantum critical point. Proceedings of the National Academy of Sciences of the United States of America. 2022. 119. 49. e2209549119-1-e2209549119-6
Carrier-doping effect and quantum criticality in Ni-doped CeCoIn5 investigated by Hall-resistivity measurements
(International Conference on Magnetism 2024 2024)
Relationship between quantum criticality and superconducting upper critical field in Ni-doped CeCoIn5
(International Conference on Magnetism 2024 2024)
Quantum criticality in Ni-doped CeCoIn5 investigated by specific heat and magnetization measurements
(International Conference on Magnetism 2024 2024)