Doped Colloidal Artificial Ice
arXiv:1507.00740 · doi:10.1088/1367-2630/17/10/103010
Abstract
We examine square and kagome artificial spin ice for colloids confined in arrays of double-well traps. Unlike magnetic artificial spin ices, colloidal and vortex artificial spin ice realizations allow creation of doping sites through double occupation of individual traps. We find that doping square and kagome ice geometries produces opposite effects. For square ice, doping creates local excitations in the ground state configuration that produce a local melting effect as the temperature is raised. In contrast, the kagome ice ground state can absorb the doping charge without generating non-ground-state excitations, while at elevated temperatures the hopping of individual colloids is suppressed near the doping sites. These results indicate that in the square ice, doping adds degeneracy to the ordered ground state and creates local weak spots, while in the kagome ice, which has a highly degenerate ground state, doping locally decreases the degeneracy and creates local hard regions.
13 pages, 6 postscript figures
References in corpus (8)
- Artificial "spin ice" in a geometrically frustrated lattice of nanoscale ferromagnetic islands
- Direct observation of the ice rule in artificial kagome spin ice
- Geometric Frustration in Buckled Colloidal Monolayers
- Artificial square ice and related dipolar nanoarrays
- Realizing Colloidal Artificial Ice on Arrays of Optical Traps
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- Macroscopic magnetic frustration
- Nambu monopoles interacting with lattice defects in two-dimensional artificial square spin ice
Cited by in corpus (8)
- Engineering of frustration in colloidal artificial ices realized on microfeatured grooved lattices
- Yang-Baxter integrable models in experiments: from condensed matter to ultracold atoms
- Ice Rule and Emergent Frustration in Particle Ice and Beyond
- Skyrmion Spin Ice in Liquid Crystals
- Ice Rule Fragility via Topological Charge Transfer in Artificial Colloidal Ice
- The Inner Phases of Colloidal Hexagonal Ice
- Tunable artificial vortex ice in nanostructured superconductors with frustrated kagome lattice of paired antidots
- Mean-field phase diagram and spin glass phase of the dipolar Kagome Ising antiferromagnet