Bulletin of the American Physical Society
APS March Meeting 2021
Volume 66, Number 1
Monday–Friday, March 15–19, 2021; Virtual; Time Zone: Central Daylight Time, USA
Session F43: Strong Electronic Correlations in Topological Materials I
11:30 AM–2:30 PM,
Tuesday, March 16, 2021
Sponsoring
Unit:
DCMP
Chair: Firoza Kabir, University of Central Florida
Abstract: F43.00015 : Gapless neutral fermions in insulating YbIr3Si7 revealed by specific heat and thermal conductivity
2:18 PM–2:30 PM
Live
Presenter:
Yuki Sato
(Kyoto Univ)
Authors:
Yuki Sato
(Kyoto Univ)
Takahiro Tominaga
(Kyoto Univ)
Shota Suetsugu
(Kyoto Univ)
Shigeru Kasahara
(Kyoto Univ)
Yuichi Kasahara
(Kyoto Univ)
Robert Peters
(Kyoto Univ)
Shunsaku Kitagawa
(Kyoto Univ)
Kenji Ishida
(Kyoto Univ)
Andriy Nevidomskyy
(Rice Univ)
Long Qian
(Rice Univ)
Jaime Moya
(Rice Univ)
Macy L Stavinoha
(Rice Univ)
Emilia Morosan
(Rice Univ)
Yuji Matsuda
(Kyoto Univ)
YbIr3Si7 is a newly discovered Kondo lattice compound, where c-f interaction leads to insulating ground state with antiferromagnetic (AF) ordering [4]. The AF ordering can be easily tuned by an external magnetic field. Here we present specific heat C and thermal conductivity κ measurements of YbIr3Si7. Between 2 and 3 T, where the AF order is suppressed, C is strongly enhanced and a finite residual linear term in the thermal conductivity κ/T (T → 0) is observed. A likely possible explanation for the present results is that CNFs are coupled directly to the spin degrees of freedom of the underlying Kondo lattice. YbIr3Si7 thus provides an intriguing platform to study the CNFs and their relationship with magnetism in strongly correlated insulators.
[1] M. Dzero et al., Annu. Rev. Con. Mat. Phys. 7, 249 (2016).
[2] Z. Xiang et al., Science 362, 65 (2018).
[3] Y. Sato et al., Nature Physics 15, 954 (2019).
[4] M. Stavinoha et al., arXiv:1908.11336v2.
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