Magnetization scaling in YbZn2GaO5 breaks down below 3 K due to collective spinon excitations coupled via emergent gauge interactions in the quantum spin liquid state.
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The elastic Grüneisen ratio becomes arbitrarily large at low T near maximal frustration in Ising models, signaling extensive ground-state entropy, while Heisenberg models show phase transitions dominating the low-T response.
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Scaling Breakdown as a Signature of Spinon-Gauge Interaction in the Quantum Spin Liquid YbZn$_2$GaO$_5$
Magnetization scaling in YbZn2GaO5 breaks down below 3 K due to collective spinon excitations coupled via emergent gauge interactions in the quantum spin liquid state.
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Unveiling Magnetic Frustration via the Elastocaloric Effect
The elastic Grüneisen ratio becomes arbitrarily large at low T near maximal frustration in Ising models, signaling extensive ground-state entropy, while Heisenberg models show phase transitions dominating the low-T response.