English

Bose glass behavior in (Yb$_{1-x}$Lu$_x$)$_4$As$_3$ representing the randomly diluted quantum spin-1/2 chains

Strongly Correlated Electrons 2016-09-27 v1

Abstract

The site-diluted compound (Yb1x_{1-x}Lux_x)4_4As3_3 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 (Yb1x_{1-x}Lux_x)4_4As3_3 in magnetic fields up to 19.5 T. The contribution CC_{\perp} arising from the magnetic subsystem in an applied magnetic field perpendicular to the chains is determined. Compared to pure Yb4_4As3_3, for which CC_{\perp} 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