Experimental Insights into Ground-State Selection of Quantum XY Pyrochlores

Author:

Hallas Alannah M.1,Gaudet Jonathan1,Gaulin Bruce D.123

Affiliation:

1. Department of Physics and Astronomy, McMaster University, Hamilton, Ontario L8S 4M1, Canada;, ,

2. Canadian Institute for Advanced Research, Toronto, Ontario M5G 1Z7, Canada

3. Brockhouse Institute for Materials Research, McMaster University, Hamilton, Ontario L8S 4M1, Canada

Abstract

Extensive experimental investigations of the magnetic structures and excitations in the XY pyrochlores have been carried out over the past decade. Three families of XY pyrochlores have emerged: Yb2B2O7, Er2B2O7, and, most recently, [Formula: see text]Co2F7. In each case, the magnetic cation (either Yb, Er, or Co) exhibits XY anisotropy within the local pyrochlore coordinates, a consequence of crystal field effects. Materials in these families display rich phase behavior and are candidates for exotic ground states, such as quantum spin ice, and exotic ground-state selection via order-by-disorder mechanisms. In this review, we present an experimental summary of the ground-state properties of the XY pyrochlores, including evidence that they are strongly influenced by phase competition. We empirically demonstrate the signatures for phase competition in a frustrated magnet: multiple heat capacity anomalies, suppressed TN or TC, sample- and pressure-dependent ground states, and unconventional spin dynamics.

Publisher

Annual Reviews

Subject

Condensed Matter Physics,General Materials Science

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