Conditions for free magnetic monopoles in nanoscale square arrays of dipolar spin ice
arXiv:1001.0748 · doi:10.1103/PhysRevB.82.054434
Abstract
We study a modified frustrated dipolar array recently proposed by Möller and Moessner [Phys. Rev. Lett. \textbf{96}, 237202 (2006)], which is based on an array manufactured lithographically by Wang \emph{et al.} [Nature (London) \textbf{439}, 303 (2006)] and consists of introducing a height offset between islands (dipoles) pointing along the two different lattice directions. The ground-states and excitations are studied as a function of . We have found, in qualitative agreement with the results of Möller and Moessner, that the ground-state changes for , where ( is the lattice parameter or distance between islands). In addition, the excitations above the ground-state behave like magnetic poles but confined by a string, whose tension decreases as increases, in such a way that for its value is around 20 times smaller than that for . The system exhibits an anisotropy in the sense that the string tension and magnetic charge depends significantly on the directions in which the monopoles are separated. In turn, the intensity of the magnetic charge abruptly changes when the monopoles are separated along the direction of the longest axis of the islands. Such a gap is attributed to the transition from the anti to the ferromagnetic ground-state when .
6 pages, 7 figures. Published version
References in corpus (9)
- Artificial "spin ice" in a geometrically frustrated lattice of nanoscale ferromagnetic islands
- Dirac Strings and Magnetic Monopoles in Spin Ice Dy2Ti2O7
- Magnetic Charge Transport
- Magnetic multipole analysis of kagome and artificial ice dipolar arrays
- Artificial square ice and related dipolar nanoarrays
- Observation of Magnetic Monopoles in Spin Ice
- Energy minimization and AC demagnetization in a nanomagnet array
- Magnetic monopole and string excitations in a two-dimensional spin ice
- Thermal quenches in spin ice
Cited by in corpus (36)
- Colloquium: Artificial spin ice: Designing and imaging magnetic frustration
- Disorder strength and field-driven ground state domain formation in artificial spin ice: experiment, simulation and theory
- Domain dynamics and fluctuations in artificial square ice at finite temperatures
- Direct Visualization of Memory Effects in Artificial Spin Ice
- Thermodynamics of elementary excitations in artificial magnetic square ice
- From confinement to deconfinement of magnetic monopoles in artificial rectangular spin ices
- Chiral nature of magnetic monopoles in artificial spin ice
- Realizing three-dimensional artificial spin ice by stacking planar nanoarrays
- Hysteresis and Return Point Memory in Artificial Spin Ice Systems
- Extending spin ice concepts to another geometry: the artificial triangular spin ice
- Nambu monopoles interacting with lattice defects in two-dimensional artificial square spin ice
- Defect Dynamics in Artificial Colloidal Ice: Real-Time Observation, Manipulation and Logic Gate
- Multi-Step Ordering in Kagome and Square Artificial Spin Ice
- On thermalization of magnetic nano-arrays at fabrication
- Dynamics and hysteresis in square lattice artificial spin-ice
- Realization of Rectangular Artificial Spin Ice and Direct Observation of High Energy Topology
- Magnetic anisotropy of elongated thin ferromagnetic nano-islands for artifical spin ice arrays
- Exploring the phases of 3D artificial spin ice: From Coulomb phase to magnetic monopole crystal
- Magnetic monopole polarons in spin ice with mixed coordination numbers
- Tension-free Dirac strings and steered magnetic charges in 3D artificial spin ice
- Vortex-crystal pattern in an anti-artificial spin ice system
- A network model for field and quenched disorder effects in artificial spin ice
- Efficient demagnetization protocol for the artificial triangular spin ice
- Magnetic oscillation modes in square lattice artificial spin ice
- Signatures of long range dipolar interactions in artificial square ice
- Order and thermalized dynamics in Heisenberg-like square and Kagomé spin ices
- Magnetic field driven dynamics in twisted bilayer artificial spin ice at superlattice angles
- Macroscopic Magnetic Monopoles in a 3D-Printed Mechano-Magnet
- Naked-eye visualization of geometric frustration effects in macroscopic spin ices
- Bilayer artificial spin ice: magnetic force switching and basic thermodynamics
- Revisiting the missing He-McKellar-Wilkens geometric quantum phase
- Geometrically induced reversion of Hall current in a topological insulator cavity
- The Concept of Spin Ice Graphs and a Field Theory for their Topological Monopoles and Charges
- Topology by Design in Magnetic nano-Materials: Artificial Spin Ice
- Direct Imaging of Complex Spin Ice Behavior and Ordered Sublattices in Artificial Ferromagnetic Quasicrystals
- Phase Transition and Monopoles Densities in a Nearest Neighbors Two-Dimensional Spin Ice Model