Non-monotonic pressure dependence of high-field nematicity and magnetism in CeRhIn5

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作者
Toni Helm
Audrey D. Grockowiak
Fedor F. Balakirev
John Singleton
Jonathan B. Betts
Kent R. Shirer
Markus König
Tobias Förster
Eric D. Bauer
Filip Ronning
Stanley W. Tozer
Philip J. W. Moll
机构
[1] Max Planck Institute for Chemical Physics of Solids,Dresden High Magnetic Field Laboratory (HLD
[2] Helmholtz-Zentrum Dresden-Rossendorf,EMFL)
[3] National High Magnetic Field Laboratory,National High Magnetic Field Laboratory Pulsed
[4] MS-E536,Field Facility
[5] Los Alamos National Laboratory,Laboratory of Quantum Materials (QMAT), Institute of Materials (IMX)
[6] Los Alamos National Laboratory,undefined
[7] École Polytechnique Fédérale de Lausanne,undefined
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摘要
CeRhIn5 provides a textbook example of quantum criticality in a heavy fermion system: Pressure suppresses local-moment antiferromagnetic (AFM) order and induces superconductivity in a dome around the associated quantum critical point (QCP) near pc ≈ 23 kbar. Strong magnetic fields also suppress the AFM order at a field-induced QCP at Bc ≈ 50 T. In its vicinity, a nematic phase at B* ≈ 28 T characterized by a large in-plane resistivity anisotropy emerges. Here, we directly investigate the interrelation between these phenomena via magnetoresistivity measurements under high pressure. As pressure increases, the nematic transition shifts to higher fields, until it vanishes just below pc. While pressure suppresses magnetic order in zero field as pc is approached, we find magnetism to strengthen under strong magnetic fields due to suppression of the Kondo effect. We reveal a strongly non-mean-field-like phase diagram, much richer than the common local-moment description of CeRhIn5 would suggest.
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