Magnetic Phase Diagram of YbRh\textsubscript{2}Si\textsubscript{2}: the Influence of Hyperfine Interactions
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arXiv
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| Format: | Preprint |
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2025
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| author | Knapp, Jan Levitin, Lev V. Nyeki, Jan Cowan, Brian Saunders, John Brando, Manuel Geibel, Christoph Krellner, Cornelius Kliemt, Kristin |
| author_facet | Knapp, Jan Levitin, Lev V. Nyeki, Jan Cowan, Brian Saunders, John Brando, Manuel Geibel, Christoph Krellner, Cornelius Kliemt, Kristin |
| contents | We report the determination of the magnetic phase diagram of the heavy fermion metal YbRh\textsubscript{2}Si\textsubscript{2} in magnetic fields up to 70\,mT applied perpendicular to the crystallographic c-axis. By a combination of heat capacity, magneto-caloric, and magneto-resistance measurements we map two antiferromagnetic phases: the electronic AFM1 below 70\,mK and electro-nuclear AFM2 below 1.5\,mK. The measurements extend into the microkelvin regime to explore the quantum phase transitions in this system. We demonstrate how the hyperfine interaction significantly modifies the phase diagram and the putative field-tuned quantum critical point. The determination of the rich magnetic properties of YbRh\textsubscript{2}Si\textsubscript{2} is essential to understanding the interplay of the two magnetic orders and superconductivity in this compound. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2501_17560 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Magnetic Phase Diagram of YbRh\textsubscript{2}Si\textsubscript{2}: the Influence of Hyperfine Interactions Knapp, Jan Levitin, Lev V. Nyeki, Jan Cowan, Brian Saunders, John Brando, Manuel Geibel, Christoph Krellner, Cornelius Kliemt, Kristin Strongly Correlated Electrons We report the determination of the magnetic phase diagram of the heavy fermion metal YbRh\textsubscript{2}Si\textsubscript{2} in magnetic fields up to 70\,mT applied perpendicular to the crystallographic c-axis. By a combination of heat capacity, magneto-caloric, and magneto-resistance measurements we map two antiferromagnetic phases: the electronic AFM1 below 70\,mK and electro-nuclear AFM2 below 1.5\,mK. The measurements extend into the microkelvin regime to explore the quantum phase transitions in this system. We demonstrate how the hyperfine interaction significantly modifies the phase diagram and the putative field-tuned quantum critical point. The determination of the rich magnetic properties of YbRh\textsubscript{2}Si\textsubscript{2} is essential to understanding the interplay of the two magnetic orders and superconductivity in this compound. |
| title | Magnetic Phase Diagram of YbRh\textsubscript{2}Si\textsubscript{2}: the Influence of Hyperfine Interactions |
| topic | Strongly Correlated Electrons |
| url | https://arxiv.org/abs/2501.17560 |