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The crystallography of correlated disorder
Classical crystallography can determine structures as complicated as multi-component
ribosomal assemblies with atomic resolution, but is inadequate for disordered systems …
ribosomal assemblies with atomic resolution, but is inadequate for disordered systems …
Experimental signatures of quantum and topological states in frustrated magnetism
Frustration in magnetic materials arising from competing exchange interactions can prevent
the system from adopting long-range magnetic order and can instead lead to a diverse …
the system from adopting long-range magnetic order and can instead lead to a diverse …
Emergent Magnetic Phases in Pressure-Tuned van der Waals Antiferromagnet
Layered van der Waals 2D magnetic materials are of great interest in fundamental
condensed-matter physics research, as well as for potential applications in spintronics and …
condensed-matter physics research, as well as for potential applications in spintronics and …
The Ising triangular-lattice antiferromagnet neodymium heptatantalate as a quantum spin liquid candidate
Disordered magnetic states known as spin liquids are of paramount importance in both
fundamental and applied science. A classical state of this kind was predicted for the Ising …
fundamental and applied science. A classical state of this kind was predicted for the Ising …
Zigzag antiferromagnetic ground state with anisotropic correlation lengths in the quasi-two-dimensional honeycomb lattice compound
The crystal structure, magnetic ground state, and the temperature-dependent microscopic
spin-spin correlations of the frustrated honeycomb lattice antiferromagnet N a 2 C o 2 Te O 6 …
spin-spin correlations of the frustrated honeycomb lattice antiferromagnet N a 2 C o 2 Te O 6 …
Total scattering and the pair distribution function in crystallography
DA Keen - Crystallography Reviews, 2020 - Taylor & Francis
The importance of total scattering and its Fourier transform, the pair distribution function, in
crystallography was understood soon after it was shown that crystals diffract X-rays …
crystallography was understood soon after it was shown that crystals diffract X-rays …
Hidden order in spin-liquid Gd3Ga5O12
Frustrated magnetic materials are promising candidates for new states of matter because
lattice geometry suppresses conventional magnetic dipole order, potentially allowing …
lattice geometry suppresses conventional magnetic dipole order, potentially allowing …
A new spin on material properties: Local magnetic structure in functional and quantum materials
The past few decades have made clear that the properties and performances of emerging
functional and quantum materials can depend strongly on their local atomic and/or magnetic …
functional and quantum materials can depend strongly on their local atomic and/or magnetic …
Emergent order in the kagome Ising magnet Dy3Mg2Sb3O14
The Ising model—in which degrees of freedom (spins) are binary valued (up/down)—is a
cornerstone of statistical physics that shows rich behaviour when spins occupy a highly …
cornerstone of statistical physics that shows rich behaviour when spins occupy a highly …
Magnetism of two-dimensional honeycomb layered driven by intermediate Na-layer crystal structure
The microscopic spin-spin correlations in the two-dimensional (2D) layered spin-1
honeycomb lattice compound Na 2 Ni 2 Te O 6 have been investigated by neutron diffraction …
honeycomb lattice compound Na 2 Ni 2 Te O 6 have been investigated by neutron diffraction …