Quantum critical scaling of specific heat in a quasicrystal

In strongly correlated systems, interactions give rise to critical fluctuations surrounding the quantum critical point (QCP) of a quantum phase transition. Quasicrystals allow the study of quantum critical phenomena in aperiodic systems with frustrated magnetic interactions. Here, we study the magne...

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Main Authors: A. Khansili, Y.-C. Huang, U. Häussermann, C. Pay Gomez, A. Rydh
Format: Article
Language:English
Published: American Physical Society 2025-04-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.7.023031
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author A. Khansili
Y.-C. Huang
U. Häussermann
C. Pay Gomez
A. Rydh
author_facet A. Khansili
Y.-C. Huang
U. Häussermann
C. Pay Gomez
A. Rydh
author_sort A. Khansili
collection DOAJ
description In strongly correlated systems, interactions give rise to critical fluctuations surrounding the quantum critical point (QCP) of a quantum phase transition. Quasicrystals allow the study of quantum critical phenomena in aperiodic systems with frustrated magnetic interactions. Here, we study the magnetic field and temperature scaling of the low-temperature specific heat for the quantum critical Yb-Au-Al quasicrystal. We devise a scaling function that encapsulates the limiting behaviors as well as the area where the system goes from a temperature-limited to a field-limited quantum critical region, where the magnetic field acts as a cutoff for critical fluctuations. The zero-field electronic specific heat is described by a power-law divergence, C_{el}/T∝T^{−0.54}, aligning with previously observed ac-susceptibility and specific-heat measurements. The field dependence of the electronic specific heat at high magnetic fields shows a similar power law C_{el}/T∝B^{−0.50}. In the zero-field and low-field region, we observe two small but distinct anomalies in the specific heat, located at 0.7 and 2.1 K.
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spelling doaj-art-d7dcbee693bf4958bbfdea132aa2b9ab2025-08-20T02:08:07ZengAmerican Physical SocietyPhysical Review Research2643-15642025-04-017202303110.1103/PhysRevResearch.7.023031Quantum critical scaling of specific heat in a quasicrystalA. KhansiliY.-C. HuangU. HäussermannC. Pay GomezA. RydhIn strongly correlated systems, interactions give rise to critical fluctuations surrounding the quantum critical point (QCP) of a quantum phase transition. Quasicrystals allow the study of quantum critical phenomena in aperiodic systems with frustrated magnetic interactions. Here, we study the magnetic field and temperature scaling of the low-temperature specific heat for the quantum critical Yb-Au-Al quasicrystal. We devise a scaling function that encapsulates the limiting behaviors as well as the area where the system goes from a temperature-limited to a field-limited quantum critical region, where the magnetic field acts as a cutoff for critical fluctuations. The zero-field electronic specific heat is described by a power-law divergence, C_{el}/T∝T^{−0.54}, aligning with previously observed ac-susceptibility and specific-heat measurements. The field dependence of the electronic specific heat at high magnetic fields shows a similar power law C_{el}/T∝B^{−0.50}. In the zero-field and low-field region, we observe two small but distinct anomalies in the specific heat, located at 0.7 and 2.1 K.http://doi.org/10.1103/PhysRevResearch.7.023031
spellingShingle A. Khansili
Y.-C. Huang
U. Häussermann
C. Pay Gomez
A. Rydh
Quantum critical scaling of specific heat in a quasicrystal
Physical Review Research
title Quantum critical scaling of specific heat in a quasicrystal
title_full Quantum critical scaling of specific heat in a quasicrystal
title_fullStr Quantum critical scaling of specific heat in a quasicrystal
title_full_unstemmed Quantum critical scaling of specific heat in a quasicrystal
title_short Quantum critical scaling of specific heat in a quasicrystal
title_sort quantum critical scaling of specific heat in a quasicrystal
url http://doi.org/10.1103/PhysRevResearch.7.023031
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