Quantum critical behavior in heavy electron materials.
basic_science · Level V
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- Record sourced from PubMed, PMID 24912172.
- Also identified by DOI 10.1073/pnas.1407561111 and PMC identifier 4060700.
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Abstract
Quantum critical behavior in heavy electron materials is typically brought about by changes in pressure or magnetic field. In this paper, we develop a simple unified model for the combined influence of pressure and magnetic field on the effectiveness of the hybridization that plays a central role in the two-fluid description of heavy electron emergence. We show that it leads to quantum critical and delocalization lines that accord well with those measured for CeCoIn5, yields a quantitative explanation of the field and pressure-induced changes in antiferromagnetic ordering and quantum critical behavior measured for YbRh2Si2, and provides a valuable framework for describing the role of magnetic fields in bringing about quantum critical behavior in other heavy electron materials.
Medical subject headings
- Electrons
- Magnetic Fields
- Models, Theoretical
- Quantum Theory