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Quantum oscillations in the heat capacity of Kondo insulator YbB12

Authors :
Chen, Kuan-Wen
Zhu, Yuan
Ratkovski, Danilo
Zheng, Guoxin
Zhang, Dechen
Chan, Aaron
Jenkins, Kaila
Blawat, Joanna
Asaba, Tomoya
Iga, Fumitoshi
Varma, C.
Matsuda, Yuji
Singleton, John
Bangura, Ali F.
Li, Lu
Publication Year :
2025

Abstract

We observe the magnetic quantum oscillation in the heat capacity of the Kondo insulator YbB$_{12}$. The frequency of these oscillations $F = 670$ T, aligns with findings from magnetoresistance and torque magnetometry experiments for $\mu_0 H > 35$ T in the Kondo insulating phase. Remarkably, the quantum oscillation amplitudes in the heat capacity are substantial, with $\Delta \tilde{C}/T \approx$ 0.5 $\rm{mJ}$ $\rm{mol^{-1}K^{-2}}$ at 0.8 K, accounting for 13$\%$ of the known linear heat capacity coefficient $\gamma$. Double-peak structures of quantum-oscillation amplitudes due to the distribution function of fermions were identified and used to determine the value of the effective mass from the heat capacity, which agrees well with that from torque magnetometry. These observations support charge-neutral fermions contributing to the quantum oscillations in YbB$_{12}$.<br />Comment: 4 figures in the main text, and 3 more figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2501.07471
Document Type :
Working Paper