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Evidence for Rare Quantum Disordered Symmetry-enriched U (1) 3D Quantum Spin Liquid (QSL) Phase in Dipolar-Octupolar pseudospin, effective spin-(1/2) Pyrochlores Magnet Ce<sub>2</sub>Zr<sub>2</sub>O<sub>7</sub>.

ORAL

Abstract

Embodied spin, orbital and lattice degrees of freedom guide the advances in quantum magnetism. Since Anderson’s proposal investigation for QSLs topological magnets with fractionalized excitations become important. Quantum Spin-Ice (QSI) are promising proprietors for QSL. In QSL collective spins excitations are described by U (1) lattice gauge theory. Ice-rules in hexagonal water ice model of frustrated material by Pauling, lead to ground state residual finite entropy. Ice rules type frustration redeemed in framework of charge order on pyrochlore, magnetic analogues of water ice. Ce2Zr 2O7 is an insulator with 4f1 Ce3+ degrees of freedom decorating pyrochlore lattice, network of corner-sharing tetrahedra, archetype for 3D-geometrical frustration. Experimental evidence on Ce2Zr2O7 above T=0.05 K shows no evidence of ordered state, suggests it may host novel QSI, 3D QSL with emergent photon. High energy neutron spectroscopy reveals crystal field ground state doublet originating from J=5/2, comprised mJ=±3/2, resulting pseudospin Seffective=1/2 degree of freedom, components transform as dipolar and octupolar moments under symmetry operations, arises from strong spin orbit coupling and crystal field effects. Theoretical modelling of heat capacity, magnetic susceptibility and neutron scattering data estimates terms in near-neighbor microscopic effective XYZ Hamiltonian, supports presence of U (1) novel QSL, ordered All-In All-Out ground state near boundary of dipolar and octupolar nature.

Publication: Nature Physics, Vol.15(10), pp.1052-1057

Presenters

  • Kalyan Sasmal

    Department of Physics, University of California, San Diego.

Authors

  • Kalyan Sasmal

    Department of Physics, University of California, San Diego.

  • Bin Gao

    Rice University

  • Tong Chen

    Rice University

  • David W Tam

    Rice University

  • Chien-Lung Huang

    Rice University

  • Devashibhai T Adroja

    STFC Rutherford-Appleton Laboratory

  • Feng Ye

    Oak Ridge National Laboratory

  • Huibo Cao

    Oak Ridge National Laboratory

  • Gabriele Sala

    Oak Ridge National Laboratory

  • Matthew B Stone

    Oak Ridge National Laboratory

  • Chris Baines

    Paul Scherrer Institute

  • Joel A. T. Verezhak

    Paul Scherrer Institute

  • Haoyu Hu

    Rice University

  • Jae-Ho Chung

    Korea University

  • Xianghan Xu

    Rutgers University

  • Sang-Wook Cheong

    Rutgers University

  • Manivannan Nallaiyan

    Quantum Design Inc.

  • Stefano Spagna

    Quantum Design Inc.

  • M. Brian Maple

    University of California, San Diego, Department of Physics, University of California, San Diego, CA 92093, USA

  • Andriy H Nevidomskyy

    Rice University

  • Emilia Morosan

    Rice University

  • Gang Chen

    The University of Hong Kong

  • Pengcheng Dai

    Rice University