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Magnetic order and ballistic spin transport in a sine-Gordon spin chain (2006.13743v1)

Published 24 Jun 2020 in cond-mat.str-el

Abstract: We report the results of muon-spin spectroscopy ($\mu+$SR) measurements on the staggered molecular spin chain pym-Cu(NO$_3$)$_2$(H$_2$O)$_2$, a material previously described using sine-Gordon field theory. Zero-field $\mu+$SR reveals a long range magnetically-ordered ground state below a transition temperature $T_\mathrm{N}=0.22(1)$ K. Using longitudinal-field (LF) $\mu+$SR we investigate the dynamic response in applied magnetic fields $0< B < 500$ mT and find evidence for ballistic spin transport. Our LF $\mu+$SR measurements on the chiral spin chain [Cu(pym)(H$_2$O)$_4$]SiF$_6 \cdot $H$_2$O instead demonstrate one-dimensional spin diffusion and the distinct spin transport in these two systems likely reflects differences in their magnetic excitations.

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