Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11260
Title: Novel Quantum Spin Liquid States in the 𝑆 =12 Three-Dimensional Compound Y3⁢Cu2⁢Sb3⁢O14
Authors: Nandi, Saikat
MAHAPATRA, SAGAR et al.
Dept. of Physics
Keywords: Quantum spin liquid
Valence bond solid
Density functional theory
Muon spin relaxation & rotation
Nuclear magnetic resonance
Specific heat measurements
Susceptibility measurements
2026-MAY-WEEK1
TOC-MAY-2026
2026
Issue Date: Apr-2026
Publisher: American Physical Society
Citation: Physical Review Letters, 136, 166502.
Abstract: The three-dimensional 𝑆 =12 system Y3⁢Cu2⁢Sb3⁢O14 consists of two inequivalent Cu2+ sites, each forming an edge shared triangular lattice. Our magnetic susceptibility 𝜒⁡(𝑇), specific heat 𝐶𝑝⁡(𝑇), 89Y nuclear magnetic resonance (NMR), muon spin relaxation (μ⁢SR), and electron spin resonance (ESR) measurements on this system confirm the absence of any long-range magnetic ordering and the persistence of spin dynamics down to 0.077 K. In 89Y NMR, we find an anomaly at about 120 K, which we suggest arises from a fraction of the spins condensing into a singlet (a valence bond solid, or VBS) state. A plateau in the muon relaxation rate is observed between 60 K and 10 K (signifying the VBS state from a fraction of the spins) followed by an increase and another plateau below about 1 K (presumably signifying the quantum spin liquid state from all the spins). Our density functional theory calculations find a dominant antiferromagnetic interaction along the body diagonal with inequivalent Cu(1) and Cu(2) ions alternately occupying the corners of the cube. All other near-neighbor interactions between the Cu ions are also found to be antiferromagnetic and are thought to drive the frustration.
URI: https://doi.org/10.1103/2bps-xvl8
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11260
ISSN: 1079-7114
0031-9007
Appears in Collections:JOURNAL ARTICLES

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