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- W2014396511 abstract "By means of nuclear spin-lattice relaxation rate ${T}_{1}^{ensuremath{-}1}$, we follow the spin dynamics as a function of the applied magnetic field in two gapped quasi-one-dimensional quantum antiferromagnets: the anisotropic spin-chain system ${mathrm{NiCl}}_{2}mathrm{text{ensuremath{-}}}4mathrm{SC}({mathrm{NH}}_{2}{)}_{2}$ and the spin-ladder system $({mathrm{C}}_{5}{mathrm{H}}_{12}mathrm{N}{)}_{2}mathrm{Cu}{mathrm{Br}}_{4}$. In both systems, spin excitations are confirmed to evolve from magnons in the gapped state to spinons in the gapless Tomonaga-Luttinger-liquid state. In between, ${T}_{1}^{ensuremath{-}1}$ exhibits a pronounced, continuous variation, which is shown to scale in accordance with quantum criticality. We extract the critical exponent for ${T}_{1}^{ensuremath{-}1}$, compare it to the theory, and show that this behavior is identical in both studied systems, thus demonstrating the universality of quantum-critical behavior." @default.
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- W2014396511 date "2012-10-26" @default.
- W2014396511 modified "2023-10-09" @default.
- W2014396511 title "Quantum-Critical Spin Dynamics in Quasi-One-Dimensional Antiferromagnets" @default.
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- W2014396511 doi "https://doi.org/10.1103/physrevlett.109.177206" @default.
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