Repulsive Tomonaga-Luttinger Liquid in Quasi-one-dimensional Alternating Spin- Antiferromagnet NaVOPO
arXiv:2311.03231
Abstract
We probe the magnetic field-induced Tomonaga-Luttinger liquid (TLL) state in the bond-alternating spin- antiferromagnetic (AFM) chain compound NaVOPO using thermodynamic as well as local SR and P NMR probes down to milli-K temperatures in magnetic fields up to 14~T. The SR and NMR relaxation rates in the gapless TLL regime decay slowly following characteristic power-law behaviour, enabling us to directly determine the interaction parameter as a function of the magnetic field. These estimates are cross-checked using magnetization and specific heat data. The field-dependent lies in the range of and indicates repulsive nature of interactions between the spinless fermions, in line with the theoretical predictions. This renders NaVOPO the first experimental realization of TLL with repulsive fermionic interactions in hitherto studied bond-alternating AFM-AFM chain compounds.
7 pages, 2 figures, 47 references