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Unusual spin pseudogap behavior in the spin web lattice Cu₃TeO₆ probed by ¹²⁵Te nuclear magnetic resonance

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arxiv 2108.01288 v1 pith:QATATUWE submitted 2021-08-03 cond-mat.str-el

Unusual spin pseudogap behavior in the spin web lattice Cu$_3$TeO$_6$ probed by $^{125}$Te nuclear magnetic resonance

classification cond-mat.str-el
keywords spintemperaturemagnetictextbehaviorexcitationslatticenuclear
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present a $^{125}$Te nuclear magnetic resonance (NMR) study in the three-dimensional spin web lattice Cu$_3$TeO$_6$, which harbors topological magnons. The $^{125}$Te NMR spectra and the Knight shift $\mathcal{K}$ as a function of temperature show a drastic change at $T_\text{S}\sim 40$ K much lower than the N\'eel ordering temperature $T_\text{N}\sim 61$ K, providing evidence for the first-order structural phase transition within the magnetically ordered state. Most remarkably, the temperature dependence of the spin-lattice relaxation rate $T_1^{-1}$ unravels spin-gap-like magnetic excitations, which sharply sets in at $T^*\sim 75$ K, the temperature well above $T_\text{N}$. The spin gap behavior may be understood by weakly dispersive optical magnon branches of high-energy spin excitations originating from the unique corner-sharing Cu hexagon spin-1/2 network with low coordination number.

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