Effect of quenched disorder on a quantum spin liquid state of triangular-lattice antiferromagnet 1T-TaS$_2$
Abstract
A quantum spin liquid (QSL) is an exotic state of matter characterized by quantum entanglement and the absence of any broken symmetry. A long-standing open problem, which is a key for fundamental understanding the mysterious QSL states, is how the quantum fluctuations respond to randomness due to quenched disorder. Transition metal dichalcogenide 1T-TaS is a candidate material that hosts a QSL ground state with spin-1/2 on the two-dimensional perfect triangular lattice. Here, we performed systematic studies of low-temperature heat capacity and thermal conductivity on pure, Se-substituted and electron irradiated crystals of 1T-TaS. In pure 1T-TaS, the linear temperature term of the heat capacity and the finite residual linear term of the thermal conductivity in the zero-temperature limit are clearly resolved, consistent with the presence of gapless spinons with a Fermi surface. Moreover, while the strong magnetic field slightly enhances , it strongly suppresses . These unusual contrasting responses to magnetic field imply the coexistence of two types of gapless excitations with itinerant and localized characters. Introduction of additional weak random exchange disorder in 1T-Ta(SSe) leads to vanishing of , indicating that the itinerant gapless excitations are sensitive to the disorder. On the other hand, in both pure and Se-substituted systems, the magnetic contribution of the heat capacity obeys a universal scaling relation, which is consistent with a theory that assumes the presence of localized orphan spins forming random singlets. Electron irradiation in pure 1T-TaS largely enhances and changes the scaling function dramatically, suggesting a possible new state of spin liquid.
Keywords
Cite
@article{arxiv.1909.00583,
title = {Effect of quenched disorder on a quantum spin liquid state of triangular-lattice antiferromagnet 1T-TaS$_2$},
author = {H. Murayama and Y. Sato and T. Taniguchi and R. Kurihara and X. Z. Xing and W. Huang and S. Kasahara and Y. Kasahara and I. Kimchi and M. Yoshida and Y. Iwasa and Y. Mizukami and T. Shibauchi and M. Konczykowski and Y. Matsuda},
journal= {arXiv preprint arXiv:1909.00583},
year = {2020}
}
Comments
10 pages, 9 figures. arXiv admin note: text overlap with arXiv:1803.06100