We have made a study of several update algorithms using the XY model. We find that sequential local overrelaxation is not ergodic at the scale of typical Monte Carlo simulation time. We have introduced a new multisite microcanonical update method, which yields results compatible with those of random overrelaxation and the microcanonical demon algorithm, which are very much slower, all being incompatible with the sequential overrelaxation results
The multicanonical method has been proven powerful for statistical investigations of lattice and off...
BERG BA, Neuhaus T. MULTICANONICAL ALGORITHMS FOR 1ST ORDER PHASE-TRANSITIONS. PHYSICS LETTERS B. 19...
We present a technique for the structural optimization of atom models to study long time relaxation ...
We have made a study of several update algorithms using the XY model. We find that sequential local ...
The massively parallel processor is used to perform Monte Carlo simulations for the two dimensional ...
AbstractWe implemented a parallel version of the multicanonical algorithm and applied it to a variet...
The j-walking method, previously developed to solve quasiergodicity problems in canonical simulation...
In the first part of this thesis, a stochastic adaptation of the microcanonical simulation method is...
I present a hybrid-like two-step algorithm, which combines a microcanonical update of a spin system ...
Monte Carlo simulation is an unbiased numerical tool for studying classical and quantum many-body sy...
We describe the canonical and microcanonical Monte Carlo algorithms for different systems that can b...
We implemented a parallel version of the multicanonical algorithm and applied it to a variety of sys...
We investigate Monte Carlo updating algorithms for simulating $SU(N)$ Yang-Mills fields on a single-...
Monte Carlo simulations have boosted the numerical study of several different physical systems and i...
We carry out a high-precision simulation of the two-dimensional $SU(3)$ principal chiral model at co...
The multicanonical method has been proven powerful for statistical investigations of lattice and off...
BERG BA, Neuhaus T. MULTICANONICAL ALGORITHMS FOR 1ST ORDER PHASE-TRANSITIONS. PHYSICS LETTERS B. 19...
We present a technique for the structural optimization of atom models to study long time relaxation ...
We have made a study of several update algorithms using the XY model. We find that sequential local ...
The massively parallel processor is used to perform Monte Carlo simulations for the two dimensional ...
AbstractWe implemented a parallel version of the multicanonical algorithm and applied it to a variet...
The j-walking method, previously developed to solve quasiergodicity problems in canonical simulation...
In the first part of this thesis, a stochastic adaptation of the microcanonical simulation method is...
I present a hybrid-like two-step algorithm, which combines a microcanonical update of a spin system ...
Monte Carlo simulation is an unbiased numerical tool for studying classical and quantum many-body sy...
We describe the canonical and microcanonical Monte Carlo algorithms for different systems that can b...
We implemented a parallel version of the multicanonical algorithm and applied it to a variety of sys...
We investigate Monte Carlo updating algorithms for simulating $SU(N)$ Yang-Mills fields on a single-...
Monte Carlo simulations have boosted the numerical study of several different physical systems and i...
We carry out a high-precision simulation of the two-dimensional $SU(3)$ principal chiral model at co...
The multicanonical method has been proven powerful for statistical investigations of lattice and off...
BERG BA, Neuhaus T. MULTICANONICAL ALGORITHMS FOR 1ST ORDER PHASE-TRANSITIONS. PHYSICS LETTERS B. 19...
We present a technique for the structural optimization of atom models to study long time relaxation ...