HepSim: A Repository with Predictions for High-Energy Physics Experiments
A file repository for calculations of cross sections and kinematic distributions using Monte Carlo generators for high-energy collisions is discussed.
S. V. Chekanov
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Examples of Monte Carlo techniques applied for nuclear data uncertainty propagation [PDF]
The aim of this work is to review different Monte Carlo techniques used to propagate nuclear data uncertainties. Firstly, we introduced Monte Carlo technique applied for Uncertainty Quantification studies in safety calculations of large scale systems. As
Cabellos Oscar, Fiorito Luca
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NEW OPPORTUNITIES FOR HIGH-PERFORMANCE SIMULATIONS OF NANOSYSTEM USING METROPOLIS SOFTWARE
The architecture and software Metropolis for computer simulation by the Monte Carlo method, as well as its modifications, are described. The tight-binding potential that does not exclude the possibility of using other modifications of many-body ...
D.N. Sokolov +4 more
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Monte Carlo dose calculation on deforming anatomy
This article presents the implementation and validation of a dose calculation approach for deforming anatomical objects. Deformation is represented by deformation vector fields leading to deformed voxel grids representing the different deformation scenarios.
Peterhans, Matthias +4 more
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Monte Carlo Simulations in Aviation Contrail Study: A Review
This article provides a review of the role of stochastic approaches, in particular Monte Carlo calculations, in the study of aviation-induced contrails at different characteristic lengths, ranging from micrometers to the planetary scale. Pioneered in the
Davide Bianco +5 more
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Evaluating Embedded Monte Carlo vs. Total Monte Carlo for Nuclear Data Uncertainty Quantification [PDF]
The purpose of this paper is to compare a new method called Embedded Monte Carlo (EMC) to the well-known Total Monte Carlo (TMC) method for nuclear data uncertainty propagation.
Biot Grégoire +3 more
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A weight window approach for dose rate calculations in Lead-cooled Fast Reactors with OpenMC [PDF]
This paper presents the application of a variance reduction technique for radiation shielding calculations in Lead-cooled Fast Reactors (LFRs) using the OpenMC Monte Carlo code. The study focuses on assessing the computational efficiency of the Method of
Zammataro Matteo +4 more
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Optimization of Monte Carlo calculations of the effective potential [PDF]
26 pages of LaTeX, uses psfig.sty with 6 figures. Entire manuscript available as a postscript file via WWW at http://www.physics.adelaide.edu.au/theory/papers/ADP-97-13.T250-abs.html or via anonymous ftp at ftp://bragg.physics.adelaide.edu.au/pub/theory/ADP-97-13.T250 ...
Ardekani, A., Williams, A.
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Quantum Monte Carlo calculations for light nuclei [PDF]
Accurate quantum Monte Carlo calculations of ground and low-lying excited states of light p-shell nuclei have been made for realistic nuclear forces. These include two-nucleon potentials that reproduce nucleon-nucleon scattering data and meson-exchange three-nucleon potentials constrained to reproduce the binding energies of s-shell nuclei. At present,
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Monte Carlo algorithm for free energy calculation [PDF]
We propose a Monte Carlo algorithm for the free energy calculation based on configuration space sampling. An upward or downward temperature scan can be used to produce F(T). We implement this algorithm for the Ising model on a square lattice and triangular lattice. Comparison with the exact free energy shows an excellent agreement.
Sheng, Bi, Ning-Hua, Tong
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