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Jul 31, 2025
Demattè, Elena; Velázquez, Juan J. L., 2025, "Numerical simulation for a one-dimensional radiative transfer equation", https://doi.org/10.60507/FK2/GKCIJK, bonndata, V1
This numerical simulation has been developed for the diffusion approximation of a one-dimensional stationary radiative transfer equation. Specifically, as the mean free path of the photons tends to zero this simulation depicts the formation of boundary layers and the fact that at the interior of the domain the radiation intensity becomes isotropic...
Python Source Code - 1.9 KB - MD5: 2f2808b8926a4a019e5c32c2b8a726f2
This document contains the Python code for the simulation
Plain Text - 1.1 KB - MD5: 6a758fffe5bcdd5f24429451e5486fb4
PNG Image - 62.3 KB - MD5: c9a1ae6fa8e0f3e8f1f21f2d2799fd76
Adobe PDF - 208.7 KB - MD5: 4952d2e8aa5936f8c88c4f89daca72c4
This document describes the analyzed problem and the method used in order to develop the simulation.
Dec 12, 2024
Ferrari, Patrik; Liu, Min, 2024, "Simulation for quasi-geodesic in ASEP and speed changed ASEP", https://doi.org/10.60507/FK2/PESMFT, bonndata, V1
This repository contains the code to simulate ASEP and ASEPsc. Apart from the particle's position, it can also be used to simulate the endpoint of quasi-geodesic in both processes. A data set containing the results of one million trials is also provided.
Plain Text - 378 B - MD5: 5015492acb7aa3963704bbfcc00d9592
Plain Text - 1.1 KB - MD5: a2e2341a3a347194780a745ea62fbbf5
ZIP Archive - 291.7 KB - MD5: 873176f90ea9a9fa62fcda6007e0e5bc
This document contains the data of the simulation results and the Mathematica code used to analyze this data.
ZIP Archive - 14.0 KB - MD5: f51e79ef984e1ec3617f9018c0cd9b96
This file contains all the MATLAB-based codes: distribution of maximizer of the Airy2 process minus parabola, ASEP, ASEPsc, quasi-geodesic, and so on.
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