Zero Point Entropy in Stuffed Spin Ice
arXiv:cond-mat/0603146 · doi:10.1038/nphys270
Abstract
The third law of thermodynamics dictates that the entropy of a system in thermal equilibrium goes to zero as its temperature approaches absolute zero. In ice, however, a "zero point" or residual entropy can be measured - attributable to a high degeneracy in the energetically preferred positions of the hydrogen ions associated with the so-called "ice rules".1,2 Remarkably, the spins in certain magnetic materials with the pyrochlore structure of corner-sharing tetrahedra, called "spin ice", have an equivalent degeneracy of energetically preferred states and also have been shown to display a zero point entropy.3,4,5,6,7 Here we report that we have chemically altered Ho2Ti2O7 spin ice by stuffing extra Ho magnetic moments into normally non-magnetic Ti sites surrounding the Ho tetrahedra. The resulting series, Ho2(Ti2-xHox)O7-x/2, provides a unique opportunity to study the effects of increased connectivity between spins on a frustrated lattice. Surprisingly, the measured zero point entropy per spin appears unchanged by these excess spins, and the dynamic freezing of the spins is suppressed to lower temperatures. The results challenge our understanding of the spin ice state, and suggest a new avenue for using chemistry to study both ice-like frustration and the properties of the broad family of geometrically frustrated magnets based on the pyrochlore structure.
17 pages, 4 figures, to be published in Nature Physics in revised form
References in corpus (4)
- Low Temperature Spin Freezing in Dy2Ti2O7 Spin Ice
- Finite Temperature Transitions in Large Magnetic Field in Dipolar Spin Ice
- Anisotropic Release of the Residual Zero-point Entropy in the Spin Ice Compound Dy2Ti2O7: Kagome-ice Behavior
- Field-Induced Transition on Triangular Plane in the Spin Ice Compound Dy2Ti2O7
Cited by in corpus (38)
- Magnetic Pyrochlore Oxides
- The Chemistry of Quantum Spin Liquids
- A parity-breaking electronic nematic phase transition in the spin-orbit coupled metal CdReO
- Pinch Points and Kasteleyn Transitions: How Spin Ice Changes its Entropy
- Vacancy defects and monopole dynamics in oxygen-deficient pyrochlores
- Stuffed Rare Earth Pyrochlore Solid Solutions
- Impact of Stoichiometry of Yb2Ti2O7 on its Physical Properties
- Thermodynamic limits of dynamic cooling
- Non-monotonic zero point entropy in diluted spin ice
- Magneto-optical Kerr Effect Studies of Square Artificial Spin Ice
- Structural Disorder and Properties of the Stuffed Pyrochlore Ho2TiO5
- New physics in frustrated magnets: Spin ices, monopoles, etc
- Pauling entropy, metastability and equilibrium in DyTiO spin ice
- Influence of an inter-chain coupling on spiral ground-state correlations in frustrated spin-1/2 J1-J2 Heisenberg chains
- Excess specific heat and evidence of zero point entropy in magnetic glassy state of half-doped manganites
- Spin ice behavior in Dy2Sn2-xSbxO7+x/2 and Dy2NbScO7
- Magnetic correlations in spin ice Ho2-xYxTi2O7 as revealed by neutron polarization analysis
- Melting of Spin Ice state through structural disorder in Dy2Zr2O7
- Further insights into the thermodynamics of the Kitaev honeycomb model
- Common Glass-Forming Spin-Liquid State in the Pyrochlore Magnets DyTiO and HoTiO
- Direct visualization of vortex ice in a nanostructured superconductor
- The pyrochlore Ho2Ti2O7: Synthesis, crystal growth and stoichiometry
- Non-monotonic residual entropy in diluted spin ice: a comparison between Monte Carlo simulations of diluted dipolar spin ice models and experimental results
- Magnetothermal study of Dy Stuffed Spin Ice: Dy2(DyxTi2-x)O7-x/2
- Tunable artificial vortex ice in nanostructured superconductors with frustrated kagome lattice of paired antidots
- Doped Colloidal Artificial Ice
- Coexisting Magnetic Order and Cooperative Paramagnetism in the Stuffed Pyrochlore Tb_{2+x}Ti_{2-2x}Nb_xO_7
- Tropical Limit in Statistical Physics
- Short-range order and hidden energy scale in geometrically frustrated magnets
- Field induced spin freezing and low temperature heat capacity of disordered pyrochlore oxide HoZrO
- Origin of the hidden energy scale and the -ratio in geometrically frustrated magnets
- Unveiling the Physics of the Mutual Interactions in Paramagnets
- Traversing the pyrochlore stability diagram; microwave-assisted synthesis and discovery of mixed B-site LnInSbO family
- Thermodynamics of two lattice ice models in three dimensions
- Zero-point entropies of spin-jam and spin-glass states in a frustrated magnet
- Coexistence of anomalous spin dynamics and weak magnetic order in a chiral trillium lattice K2FeSn(PO4)3
- Excitation spectrum and low-temperature magnetism in disordered defect-fluorite Ho2Zr2O7
- Thermodynamic Properties of Ice: A Monte Carlo Study