A Bayesian Approach to Nuclear Spin Relaxation Phenomena in Topological Kondo Insulator SmB 6

In studies of the promising topological Kondo insulator (TKI) candidate SmB 6 , nuclear magnetic resonance (NMR) measurements of the spin–lattice relaxation rate, 1/T 1 , have provided crucial insights into this compound: for example, the unique opening of a small hybridization gap within a narrow band at low temperatures. However, the origin of the hump-like behavior of 1/T 1 reported below 20 K remains poorly understood. To address the mechanisms of low-temperature T 1 relaxation, we have precisely analyzed the 11 B-NMR T 1 relaxation curves of single-crystalline SmB 6 by introducing a Bayesian inference framework, which provides insights beyond the conventional least-squares fit in terms of a quantitative measure of fitting quality. Our comparative analysis using three different models reveals that the T 1 relaxation curve, which is well described by a single component above ∼100 K, evolves into a multi-component regime below ∼60 K, suggesting the inhomogeneous development of the hybridization gap. Below ∼20 K, 1/T 1 in the present study also exhibits an anomalous enhancement, which remains clear even after considering the distribution of T 1 components. The analysis suggests that this low-temperature enhancement is an intrinsic property of this compound, and that a novel relaxation mechanism — distinct from the high-temperature process driven by the density of states — emerges in this temperature region. These observed phenomena are discussed based on the analogy with other potential TKIs, SmS, and YbB 12 .

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Publication Details

Journal
Journal of the Physical Society of Japan
Published
2026-09-04
DOI
https://doi.org/10.7566/jpsj.95.104703
Primary Topic
Rare-earth and actinide compounds
Type
article
Field-Weighted Citation Impact
0.00

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article

A Bayesian Approach to Nuclear Spin Relaxation Phenomena in Topological Kondo Insulator SmB 6

F. Iga, Tomoki Nishikawa, Yusuke Nakai, T. Mito et al.
Journal of the Physical Society of Japan
Rare-earth and actinide compounds
article

A Bayesian Approach to Nuclear Spin Relaxation Phenomena in Topological Kondo Insulator SmB 6

F. Iga, Tomoki Nishikawa, Yusuke Nakai, T. Mito, Hajime Ueda, Shogo Yoshida, Hiroaki Shishido, Masato Okada, T. Fujii, Shun Katakami, Takuma Ishiguri
article en

Abstract

In studies of the promising topological Kondo insulator (TKI) candidate SmB 6 , nuclear magnetic resonance (NMR) measurements of the spin–lattice relaxation rate, 1/T 1 , have provided crucial insights into this compound: for example, the unique opening of a small hybridization gap within a narrow band at low temperatures. However, the origin of the hump-like behavior of 1/T 1 reported below 20 K remains poorly understood. To address the mechanisms of low-temperature T 1 relaxation, we have precisely analyzed the 11 B-NMR T 1 relaxation curves of single-crystalline SmB 6 by introducing a Bayesian inference framework, which provides insights beyond the conventional least-squares fit in terms of a quantitative measure of fitting quality. Our comparative analysis using three different models reveals that the T 1 relaxation curve, which is well described by a single component above ∼100 K, evolves into a multi-component regime below ∼60 K, suggesting the inhomogeneous development of the hybridization gap. Below ∼20 K, 1/T 1 in the present study also exhibits an anomalous enhancement, which remains clear even after considering the distribution of T 1 components. The analysis suggests that this low-temperature enhancement is an intrinsic property of this compound, and that a novel relaxation mechanism — distinct from the high-temperature process driven by the density of states — emerges in this temperature region. These observed phenomena are discussed based on the analogy with other potential TKIs, SmS, and YbB 12 .

Journal of the Physical Society of JapanVol. 95(10)
Osaka Prefecture University (JP), University of Hyogo (JP), Comprehensive Research Organization for Science and Society (JP), Osaka Metropolitan University (JP), Ibaraki University (JP), The University of Tokyo (JP)
Support for Pioneering Research Initiated by the Next Generation, Japan Society for the Promotion of Science
Openalex Percentile: Top 16%
Rare-earth and actinide compounds
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