Unconventional magnetic oscillations in a kagome Mott insulator
Abstract
In metals, electrons in a magnetic field undergo cyclotron motion, leading to oscillations in physical properties called quantum oscillations. This phenomenon has never been seen in a robust insulator because there are no mobile electrons. We report an exception to this rule. We study a Mott insulator on a kagome lattice which does not order magnetically down to milli-Kelvin temperatures despite antiferromagnetic interactions. We observe a plateau at magnetization equal to 1 9 Bohr magneton per magnetic ion, accompanied by oscillations in the magnetic torque, reminiscent of quantum oscillations in metals. The temperature dependence obeys Fermi distribution. These phenomena are consistent with a quantum spin liquid state whose excitations are fermionic spinons with a Dirac-like spectrum coupled to an emergent gauge field.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (15)
Guoxin Zheng
Department of Physics
Yuan Zhu
Kuan-Wen Chen
Department of Physics
Byungmin Kang
Department of Physics
Dechen Zhang
Department of Physics
Kaila Jenkins
Department of Physics
Aaron Chan
Department of Physics
Zhenyuan Zeng
Beijing National Laboratory for Condensed Matter Physics
Aini Xu
Beijing National Laboratory for Condensed Matter Physics
Oscar A. Valenzuela
National High Magnetic Field Laboratory
Joanna Blawat
NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States
John Singleton
NHMFL, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, United States
Shiliang Li
Beijing National Laboratory for Condensed Matter Physics
Patrick A. Lee
Lu Li