Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal

We report on the low-temperature thermal expansion and magnetostriction of the single-impurity quadrupolar Kondo candidate Y_{1−x}Pr_{x}Ir_{2}Zn_{20}. In the dilute limit, we find a quadrupolar strain that possesses a singular dependence on temperature T, ɛ_{u}∼H^{2}log(1/T), for a small but finite...

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Main Authors: A. Wörl, M. Garst, Y. Yamane, S. Bachus, T. Onimaru, P. Gegenwart
Format: Article
Jezik:English
Izdano: American Physical Society 2022-06-01
Serija:Physical Review Research
Online dostop:http://doi.org/10.1103/PhysRevResearch.4.L022053
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author A. Wörl
M. Garst
Y. Yamane
S. Bachus
T. Onimaru
P. Gegenwart
author_facet A. Wörl
M. Garst
Y. Yamane
S. Bachus
T. Onimaru
P. Gegenwart
author_sort A. Wörl
collection DOAJ
description We report on the low-temperature thermal expansion and magnetostriction of the single-impurity quadrupolar Kondo candidate Y_{1−x}Pr_{x}Ir_{2}Zn_{20}. In the dilute limit, we find a quadrupolar strain that possesses a singular dependence on temperature T, ɛ_{u}∼H^{2}log(1/T), for a small but finite magnetic field H. Together with the previously reported anomalous specific heat C, this implies a quadrupolar Grüneisen ratio Γ_{u}=∂_{T}ɛ_{u}/C∼H^{2}/[T^{2}log(1/T)] whose divergence for finite H is consistent with the scenario of a quadrupolar Kondo effect. In addition, we find a singular behavior of the isotropic strain ɛ_{B} in zero magnetic field resulting in a divergence of both the volume thermal expansion and the volume Grüneisen parameter. We speculate that this behavior might be also induced by putative Kondo correlations via elastic anharmonicities or static strain disorder.
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spelling doaj.art-4e38126446914d17b90ec5c8c041feff2024-04-12T17:21:35ZengAmerican Physical SocietyPhysical Review Research2643-15642022-06-0142L02205310.1103/PhysRevResearch.4.L022053Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metalA. WörlM. GarstY. YamaneS. BachusT. OnimaruP. GegenwartWe report on the low-temperature thermal expansion and magnetostriction of the single-impurity quadrupolar Kondo candidate Y_{1−x}Pr_{x}Ir_{2}Zn_{20}. In the dilute limit, we find a quadrupolar strain that possesses a singular dependence on temperature T, ɛ_{u}∼H^{2}log(1/T), for a small but finite magnetic field H. Together with the previously reported anomalous specific heat C, this implies a quadrupolar Grüneisen ratio Γ_{u}=∂_{T}ɛ_{u}/C∼H^{2}/[T^{2}log(1/T)] whose divergence for finite H is consistent with the scenario of a quadrupolar Kondo effect. In addition, we find a singular behavior of the isotropic strain ɛ_{B} in zero magnetic field resulting in a divergence of both the volume thermal expansion and the volume Grüneisen parameter. We speculate that this behavior might be also induced by putative Kondo correlations via elastic anharmonicities or static strain disorder.http://doi.org/10.1103/PhysRevResearch.4.L022053
spellingShingle A. Wörl
M. Garst
Y. Yamane
S. Bachus
T. Onimaru
P. Gegenwart
Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal
Physical Review Research
title Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal
title_full Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal
title_fullStr Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal
title_full_unstemmed Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal
title_short Divergent thermal expansion and Grüneisen ratio in a quadrupolar Kondo metal
title_sort divergent thermal expansion and gruneisen ratio in a quadrupolar kondo metal
url http://doi.org/10.1103/PhysRevResearch.4.L022053
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