Spin ice

The pyrochlore lattice decorated with magnetic moments and ferromagnetic nearest neighbor interactions is a simple example of a three-dimensional geometrically frustrated system. Using the forward Monte Carlo method, the Hamiltonian

\[E=-J\sum_{\langle i,j\rangle}\pmb{S}_i\cdot\pmb{S}_j\]

is used to describe the nearest neighbor ferromagnetic interactions where the interaction strength is greater than zero (\(J>0\)). The spin vectors \(\pmb{S}\) of the \(\mathrm{Ho^{3+}}\) ions are restricted to be oriented either in or out of the vertex of each tetrahedra which corresponds to the \(\langle111\rangle\) family of directions.

Standard-cubic Pyrochlore-magnetic
Example of pyrochlore lattice with magnetic disorder

The spin-pair correlations of an \(8\times8\times8\) supercell are obtained from a forward Monte Carlo simulation. The first nearest neighbors are clearly ferromagnetic while the second are antiferromagnetic.

Pyrochlore-magnetic correlations
Spin-pair correlations

The diffuse scattering intensity is calculated over a range of -6 to 6 in each \(h\)-, \(k\)-, and \(l\)-direction with a bin size of 0.04 in each dimension. Averaging is done over 20 independent forward Monte Carlo simulations to improve the statistics. A slice in the \((h,h,l)\)-plane is also calculated from -4 to 4 along \((h,h,0)\) and -6 to 6 along \((0,0,l)\).

Pyrochlore-magnetic intensity
Diffuse scattering intensity

RMC refinement

Setup, run, and analyze a refinement with magnetic disorder.

Crystal tab

Create a supercell for magnetic refinement.

Pyrochlore GUI crystal tab
Crystal tab

Intensity tab

Preprocess intensity obtained from forward Monte Carlo.

Pyrochlore GUI intensity tab
Intensity tab

Refinement tab

Perform the refinement.

Pyrochlore GUI refinement tab
Refinement tab

Correlations tab

Calculate three-dimensional spin-pair correlations.

Pyrochlore GUI correlations tab
Correlations tab

Recalculation tab

Recalculate the intensity over new axes.

Pyrochlore GUI recalculation tab
Recalculation tab