Bose glass behavior in (Yb$_{1-x}$Lu$_x$)$_4$As$_3$ representing the randomly diluted quantum spin-1/2 chains
Abstract
The site-diluted compound (YbLu)As is a scarce realization of the linear Heisenberg antiferromagnet partitioned into finite-size segments and is an ideal model compound for studying field-dependent effects of quenched disorder in the one-dimensional antiferromagnets. It differentiates from the systems studied so far in two aspects - the type of randomness and the nature of the energy gap in the pure sample. We have measured the specific heat of single-crystal (YbLu)As in magnetic fields up to 19.5 T. The contribution arising from the magnetic subsystem in an applied magnetic field perpendicular to the chains is determined. Compared to pure YbAs, for which indicates a gap opening, for diluted systems a non-exponential decay is found at low temperatures which is consistent with the thermodynamic scaling of the specific heat established for a Bose-glass phase.
Keywords
Cite
@article{arxiv.1609.06472,
title = {Bose glass behavior in (Yb$_{1-x}$Lu$_x$)$_4$As$_3$ representing the randomly diluted quantum spin-1/2 chains},
author = {G. Kamieniarz and R. Matysiak and P. Gegenwart and A. Ochiai and F. Steglich},
journal= {arXiv preprint arXiv:1609.06472},
year = {2016}
}
Comments
8 pages, 17 figures, including supplemental material, accepted for PRB rapid communication