Pyrochlore NaYbO2: A potential Quantum Spin Liquid Candidate
arXiv:2501.15350 · doi:10.1021/jacs.4c13166
Abstract
The search for quantum spin liquids (QSL) and chemical doping in such materials to explore superconductivity have continuously attracted intense interest. Here, we report the discovery of a potential QSL candidate, pyrochlore-lattice beta-NaYbO2. Colorless and transparent NaYbO2 single crystals, layered alpha-NaYbO2 (~250 um on edge) and octahedral beta-NaYbO2 (~50 um on edge), were grown for the first time. Synchrotron X-ray single crystal diffraction unambiguously determined that the newfound beta-NaYbO2 belongs to the three-dimensional pyrochlore structure characterized by the R-3m space group, corroborated by synchrotron X-ray and neutron powder diffraction and pair distribution function. Magnetic measurements revealed no long-range magnetic order or spin glass behavior down to 0.4 K with a low boundary spin frustration factor of 17.5, suggesting a potential QSL ground state. Under high magnetic fields, the potential QSL state was broken and spins order. Our findings reveal that NaYbO2 is a fertile playground for studying novel quantum states.
This document is the unedited author's version of a Submitted Work that was subsequently accepted for publication in Journal of the American Chemical Society, copyright American Chemical Society after peer review. To access the final edited and published work, a link will be provided soon
References in corpus (37)
- Quantum Spin Liquids
- Quantum Spin Liquid States
- Magnetic Pyrochlore Oxides
- Fractionalized excitations in the spin liquid state of a kagomé lattice antiferromagnet
- Quantum Spin Liquids
- Kitaev quantum spin liquid - concept and materialization
- Neutron tomography of magnetic Majorana fermions in a proximate quantum spin liquid
- Herbertsmithite and the Search for the Quantum Spin Liquid
- Tutorial: A Beginner's Guide to Interpreting Magnetic Susceptibility Data with the Curie-Weiss Law
- Experimental Realization of Spin-1/2 Triangular-Lattice Heisenberg Antiferromagnet
- Field-tunable quantum disordered ground state in the triangular lattice antiferromagnet NaYbO
- Disorder-Induced Mimicry of a Spin Liquid in YbMgGaO
- Experimental identification of quantum spin liquids
- Rare-earth chalcogenides: A large family of triangular lattice spin liquid candidate
- The Chemistry of Quantum Spin Liquids
- Gapless spin-liquid state in the structurally disorder-free triangular antiferromagnet NaYbO
- Spin-glass ground state in a triangular-lattice compound YbZnGaO
- Cascade of magnetic-field-induced quantum phase transitions in a spin triangular-lattice antiferromagnet
- Field-induced instability of the quantum-spin-liquid ground state in the triangular-lattice compound NaYbO
- Spinon Fermi surface spin liquid in a triangular lattice antiferromagnet NaYbSe
- Witnessing quantum criticality and entanglement in the triangular antiferromagnet KYbSe
- Gapped magnetic ground state in quantum-spin-liquid candidate -(BEDT-TTF)-Cu(CN)
- Quantum Magnetism in Minerals
- Spin excitations in the frustrated triangular lattice antiferromagnet NaYbO
- A Measure of Monopole Inertia in the Quantum Spin Ice YbTiO
- Beyond Kitaev physics in strong spin-orbit coupled magnets
- Dzyaloshinskii-Moriya interaction and spin re-orientation transition in the frustrated kagome lattice antiferromagnet
- Multiphase Magnetism in Yb2Ti2O7
- LiYbSe2: Frustrated Magnetism in a New Pyrochlore Lattice
- High-field magnetization and magnetic phase diagram of -CuVO
- Synthesis and Anisotropic Magnetism in Quantum Spin Liquid Candidates YbSe ( = K and Rb)
- 50 years of quantum spin liquids
- Leading theories of the cuprate superconductivity: a critique
- Valence bond phases of herbertsmithite and related copper kagome materials
- Cascade of phase transitions and large magnetic anisotropy in a triangle-kagome-triangle trilayer antiferromagnet
- Quantum spin liquids
- First-principles study of magnetic structures of triangular antiferromagnets NaYbS and NaYbO