Non-monotonic residual entropy in diluted spin ice: a comparison between Monte Carlo simulations of diluted dipolar spin ice models and experimental results
arXiv:1303.7240 · doi:10.1103/PhysRevB.90.214433
Abstract
Spin ice materials, such as Dy2Ti2O7 and Ho2Ti2O7, have been the subject of much interest for over the past fifteen years. Their low temperature strongly correlated state can be mapped onto the proton disordered state of common water ice and, consequently, spin ices display the same low temperature residual Pauling entropy as water ice. Interestingly, it was found in a previous study [X. Ke {\it et. al.} Phys. Rev. Lett. {\bf 99}, 137203 (2007)] that, upon dilution of the magnetic rare-earth ions (Dy^{3+} and Ho^{3+}) by non-magnetic Yttrium (Y^{3+}) ions, the residual entropy depends {\it non-monotonically} on the concentration of Y^{3+} ions. In the present work, we report results from Monte Carlo simulations of site-diluted microscopic dipolar spin ice models (DSIM) that account quantitatively for the experimental specific heat measurements, and thus also for the residual entropy, as a function of dilution, for both Dy2Ti2O7 and Ho2Ti2O7. The main features of the dilution physics displayed by the magnetic specific heat data are quantitatively captured by the diluted DSIM up to, and including, 85% of the magnetic ions diluted (x=1.7). The previously reported departures in the residual entropy between Dy2Ti2O7 versus Ho2Ti2O7, as well as with a site-dilution variant of Pauling's approximation, are thus rationalized through the site-diluted DSIM. For 90% (x=1.8) and 95% (x=1.9) of the magnetic ions diluted, we find a significant discrepancy between the experimental and Monte Carlo specific heat results. We discuss some possible reasons for this disagreement.
10 pages, 4 figures
References in corpus (17)
- Quantum Spin Ice: A Search for Gapless Quantum Spin Liquids in Pyrochlore Magnets
- Why spin ice obeys the ice rules
- Lightly stuffed pyrochlore structure of single-crystalline Yb2Ti2O7 grown by the optical floating zone technique
- Dy2Ti2O7 Spin Ice: a Test Case for Emergent Clusters in a Frustrated Magnet
- Vacancy defects and monopole dynamics in oxygen-deficient pyrochlores
- Non-monotonic zero point entropy in diluted spin ice
- Local Spin Susceptibility of the S=1/2 Kagome Lattice in ZnCu3(OD)6Cl2
- Spin Glass Transition at Nonzero Temperature in a Disordered Dipolar Ising System: The Case of LiHoxY{1-x}F4
- Phase diagram of the dilute magnet LiHo_xY_{1-x}F_4
- Coulomb phase diagnostics as function of temperature, interaction range and disorder
- From frustration to glassiness via quantum fluctuations and random tiling with exotic entropy
- Spin ice behavior in Dy2Sn2-xSbxO7+x/2 and Dy2NbScO7
- Low-temperature properties of the dilute dipolar magnet LiHo_xY_(1-x)F_4
- Magnetic correlations in spin ice Ho2-xYxTi2O7 as revealed by neutron polarization analysis
- Existence of a Thermodynamic Spin-Glass Phase in the Zero-Concentration Limit of Anisotropic Dipolar Systems
- Experimental Phase Diagram and Dynamics of a Dilute Dipolar-Coupled Ising System
- Low temperature dynamic freezing and the fragility of ordering in Tb2Sn2O7
Cited by in corpus (13)
- Refrustration and competing orders in the prototypical Dy2Ti2O7 spin ice material
- Spin Ice Thin Film: Surface Ordering, Partial Magnetic Wetting and Emergent Square Ice
- Suppression of Pauling's Residual Entropy in Dilute Spin Ice (DyY)TiO
- Probing Flat Band Physics in Spin Ice Systems via Polarized Neutron Scattering
- Entropy of the diluted antiferromagnetic Ising models on the frustrated lattices using the Wang-Landau method
- Comparison of diluted antiferromagnetic Ising models on frustrated lattices in a magnetic field
- Large peaks in the entropy of the diluted nearest-neighbor spin-ice model on the pyrochlore lattice in a [111] magnetic field
- Interplay of dilution and magnetic field in the nearest-neighbor spin-ice model on the pyrochlore lattice
- Spin Wave Excitations in AFeSe (A=K, Tl): Analytical Study
- Random site dilution properties of frustrated magnets on a hierarchical lattice
- 2-Form U(1) Spin Liquids: Classical Model and Quantum Aspects
- Energetic analysis of disorder effects in an artificial spin ice with dipolar interactions
- The dipolar spin glass transition in three dimensions