A geometrically frustrated (GF) magnet consists of localised magnetic moments, spins, whose orientation cannot be arranged to simultaneously minimise their interaction energies. Such materials may host novel fascinating phases of matter, such as fluid-like states called quantum spin liquids. GF magnets have, like all solid-state systems, randomly located impurities whose magnetic moments may ``freeze'' at low temperatures, making the system enter a spin-glass state. We analyse the available data for spin-glass transitions in GF materials and find a surprising trend: the glass-transition temperature grows with decreasing impurity concentration and reaches a finite value in the impurity-free limit at a previously unidentified, ``hidden'', ene...
We propose that in a certain class of magnetic materials, known as non-Kramers “spin ice,” disorder ...
We review recent research on quantum glasses, with a focus on their equilibrium dynamics and the int...
Using computer simulations of an atomistic glass-forming liquid, we investigate the fluctuations of ...
A geometrically frustrated (GF) magnet consists of localised magnetic moments, spins, whose orientat...
Quenched disorder may prevent the formation of the widely sought quantum-spin-liquid states (QSLs) o...
A spin glass is a diluted magnetic material in which the magnetic moments are randomly interacting, ...
This thesis will present research that studies the role of disorder, geometric frustration and the l...
We study the statistical mechanics and the equilibrium dynamics of a system of classical Heisenberg ...
The spin ice compound Dy_2Ti_2O_7 is well-known to realise a three-dimensional Coulomb spin liquid w...
We propose an approach toward understanding the spin glass phase at zero and low temperature by stud...
We consider an alternative to the usual spin glass paradigm for disordered magnetism, consisting of ...
A growing body of evidence indicates that the sluggish low-temperature dynamics of glass formers (e....
In magnetic materials, spins sometimes freeze into spatially disordered glassy states. Glass forming...
The complete phase diagram of the Kitaev model with a magnetic field remains elusive, as do the expe...
The origin and nature of glassy dynamics presents one of the central enigmas of condensed matter phy...
We propose that in a certain class of magnetic materials, known as non-Kramers “spin ice,” disorder ...
We review recent research on quantum glasses, with a focus on their equilibrium dynamics and the int...
Using computer simulations of an atomistic glass-forming liquid, we investigate the fluctuations of ...
A geometrically frustrated (GF) magnet consists of localised magnetic moments, spins, whose orientat...
Quenched disorder may prevent the formation of the widely sought quantum-spin-liquid states (QSLs) o...
A spin glass is a diluted magnetic material in which the magnetic moments are randomly interacting, ...
This thesis will present research that studies the role of disorder, geometric frustration and the l...
We study the statistical mechanics and the equilibrium dynamics of a system of classical Heisenberg ...
The spin ice compound Dy_2Ti_2O_7 is well-known to realise a three-dimensional Coulomb spin liquid w...
We propose an approach toward understanding the spin glass phase at zero and low temperature by stud...
We consider an alternative to the usual spin glass paradigm for disordered magnetism, consisting of ...
A growing body of evidence indicates that the sluggish low-temperature dynamics of glass formers (e....
In magnetic materials, spins sometimes freeze into spatially disordered glassy states. Glass forming...
The complete phase diagram of the Kitaev model with a magnetic field remains elusive, as do the expe...
The origin and nature of glassy dynamics presents one of the central enigmas of condensed matter phy...
We propose that in a certain class of magnetic materials, known as non-Kramers “spin ice,” disorder ...
We review recent research on quantum glasses, with a focus on their equilibrium dynamics and the int...
Using computer simulations of an atomistic glass-forming liquid, we investigate the fluctuations of ...