Physical Review Letters · 2004 · 180 citations · 10 references
Computational ScienceEngineeringGraph TheoryData ScienceData MiningPattern RecognitionFlat HistogramNatural SciencesFlat Histogram AlgorithmFlat Histogram VersionComputer ScienceDiscrete MathematicsProbabilistic Graph TheoryComputational GeometryApproximation TheoryGeneric Lattice ModelMultiscale Modeling
In this Letter we present a flat histogram algorithm based on the pruned and enriched Rosenbluth method. This algorithm incorporates in a straightforward manner microcanonical reweighting techniques, leading to "flat histogram" sampling in the chosen parameter space. As an additional benefit, our algorithm is completely parameter free and, hence, easy to implement. We apply this algorithm to interacting self-avoiding walks, the generic lattice model of polymer collapse.
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Multicanonical algorithms for first order phase transitions
Bernd A. Berg, Thomas Neuhaus · Physics Letters B · 1991 · 1.2K citations