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Evidence of Dirac Quantum Spin Liquid in YbZn_{2}GaO_{5}.

Publication ,  Journal Article
Bag, R; Xu, S; Sherman, NE; Yadav, L; Kolesnikov, AI; Podlesnyak, AA; Choi, ES; da Silva, I; Moore, JE; Haravifard, S
Published in: Physical review letters
December 2024

The emergence of a quantum spin liquid (QSL), a state of matter that can result when electron spins are highly correlated but do not become ordered, has been the subject of a considerable body of research in condensed matter physics [1,2]. Spin liquid states have been proposed as hosts for high-temperature superconductivity [3] and can host topological properties with potential applications in quantum information science [4]. The excitations of most quantum spin liquids are not conventional spin waves but rather quasiparticles known as spinons, whose existence is well established experimentally only in one-dimensional systems; the unambiguous experimental realization of QSL behavior in higher dimensions remains challenging. Here, we investigate the novel compound YbZn_{2}GaO_{5}, which hosts an ideal triangular lattice of effective spin-1/2 moments with no detectable inherent chemical disorder. Thermodynamic and inelastic neutron scattering measurements performed on high-quality single crystal samples of YbZn_{2}GaO_{5} exclude the possibility of long-range magnetic ordering down to 0.06 K, demonstrate a quadratic power law for the specific heat and reveal a continuum of magnetic excitations in parts of the Brillouin zone. Both low-temperature thermodynamics and inelastic neutron scattering spectra suggest that YbZn_{2}GaO_{5} is a U(1) Dirac QSL with spinon excitations concentrated at certain points in the Brillouin zone. We advanced these results by performing additional specific heat measurements under finite fields, further confirming the theoretical expectations for a Dirac QSL on the triangular lattice of YbZn_{2}GaO_{5}.

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Published In

Physical review letters

DOI

EISSN

1079-7114

ISSN

0031-9007

Publication Date

December 2024

Volume

133

Issue

26

Start / End Page

266703

Related Subject Headings

  • General Physics
  • 51 Physical sciences
  • 49 Mathematical sciences
  • 40 Engineering
  • 09 Engineering
  • 02 Physical Sciences
  • 01 Mathematical Sciences
 

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Bag, R., Xu, S., Sherman, N. E., Yadav, L., Kolesnikov, A. I., Podlesnyak, A. A., … Haravifard, S. (2024). Evidence of Dirac Quantum Spin Liquid in YbZn_{2}GaO_{5}. Physical Review Letters, 133(26), 266703. https://doi.org/10.1103/physrevlett.133.266703
Bag, Rabindranath, Sijie Xu, Nicholas E. Sherman, Lalit Yadav, Alexander I. Kolesnikov, Andrey A. Podlesnyak, Eun Sang Choi, Ivan da Silva, Joel E. Moore, and Sara Haravifard. “Evidence of Dirac Quantum Spin Liquid in YbZn_{2}GaO_{5}.Physical Review Letters 133, no. 26 (December 2024): 266703. https://doi.org/10.1103/physrevlett.133.266703.
Bag R, Xu S, Sherman NE, Yadav L, Kolesnikov AI, Podlesnyak AA, et al. Evidence of Dirac Quantum Spin Liquid in YbZn_{2}GaO_{5}. Physical review letters. 2024 Dec;133(26):266703.
Bag, Rabindranath, et al. “Evidence of Dirac Quantum Spin Liquid in YbZn_{2}GaO_{5}.Physical Review Letters, vol. 133, no. 26, Dec. 2024, p. 266703. Epmc, doi:10.1103/physrevlett.133.266703.
Bag R, Xu S, Sherman NE, Yadav L, Kolesnikov AI, Podlesnyak AA, Choi ES, da Silva I, Moore JE, Haravifard S. Evidence of Dirac Quantum Spin Liquid in YbZn_{2}GaO_{5}. Physical review letters. 2024 Dec;133(26):266703.

Published In

Physical review letters

DOI

EISSN

1079-7114

ISSN

0031-9007

Publication Date

December 2024

Volume

133

Issue

26

Start / End Page

266703

Related Subject Headings

  • General Physics
  • 51 Physical sciences
  • 49 Mathematical sciences
  • 40 Engineering
  • 09 Engineering
  • 02 Physical Sciences
  • 01 Mathematical Sciences