Ameli (ameli1)

ameli1

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Ameli's repositories

MiniScatter

Easy-to-use wrapper for the Geant4 library for Monte Carlo radiation transport in matter. Possible to use either from the command line or from within Python/Jupyter. This makes estimating energy deposition from a particle beam in a target or the scattering and energy loss of the beam particles a relatively straight-forward process.

License:GPL-3.0Stargazers:0Issues:0Issues:0

ipython

Official repository for IPython itself. Other repos in the IPython organization contain things like the website, documentation builds, etc.

License:BSD-3-ClauseStargazers:0Issues:0Issues:0

WarpX

WarpX is an advanced electromagnetic Particle-In-Cell code.

License:NOASSERTIONStargazers:0Issues:0Issues:0

marvin

Data access and visualization for MaNGA. http://sdss-marvin.readthedocs.io/en/latest/

License:BSD-3-ClauseStargazers:0Issues:0Issues:0

StackClub

Learning the LSST software Stack, by writing jupyter notebook tutorials.

License:MITStargazers:0Issues:0Issues:0

tutorial-notebooks

Tutorial Jupyter Notebooks for Data Preview 0, created and maintained by the Rubin Observatory Community Engagement Team.

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CRPropa3

CRPropa is a public astrophysical simulation framework for propagating extraterrestrial ultra-high energy particles. https://crpropa.github.io/CRPropa3/

License:GPL-3.0Stargazers:0Issues:0Issues:0

jupyter

Jupyter metapackage for installation, docs and chat

License:BSD-3-ClauseStargazers:0Issues:0Issues:0

zpic

ZPIC - Educational Particle-In-Cell code suite

License:AGPL-3.0Stargazers:0Issues:0Issues:0

ipympl

Matplotlib Jupyter Integration

License:BSD-3-ClauseStargazers:0Issues:0Issues:0

Smilei

Particle-in-cell code for plasma simulation

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rdtx

RDTX code - calculates radiation from charged particles

License:GPL-3.0Stargazers:0Issues:0Issues:0

openPMD-standard

:notebook: Open Standard for Particle-Mesh Data

License:NOASSERTIONStargazers:0Issues:0Issues:0

Quill

Quill is a 3D QED-PIC code for simulations of interaction of electromagnetic radiation and particles with plasmas with QED effects such as gamma photon radiation and electron–positron pair production.

License:MITStargazers:0Issues:0Issues:0

athena

Athena++ radiation MHD code

License:BSD-3-ClauseStargazers:0Issues:0Issues:0

MCRT_Muon_Simulation

Monte Carlo simulations are a powerful computational tool for simulating the transport of particles through matter. They are inherently probabilistic in nature which makes them useful for cascade physics. This method adapts existing code for propagating photons through various stellar objects to model cosmic-ray muons traveling through materials of different Z-number. The code simplifies multiple coulomb scattering into purely elastic collisions using Rutherford scattering. The screened model calculated the standard deviation of the spread of exit angles to be 10.1 milliradians for iron and 20.7 milliradians for lead. Borozdin et al. simulated the spread in iron to be 11 milliradians in iron and 20 milliradians in lead. The results agree with previous simulations using GEANT4 and can be easily modified for different materials and inclusions. A point of closest approach algorithm is used to reconstruct and identify the placement of high Z materials embedded in a volume. However, more advanced reconstructive algorithms should be used for higher accuracy. For the future of imaging nuclear waste, this code provides a simple and accurate tool.

License:GPL-3.0Stargazers:0Issues:0Issues:0

radiative_transfer-plasmoids

Application of relativistic plasmoids in blazar emission.

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plot_pluto

Some python and R scripts to plot the results of capillary discharge simulations made with the MHD code PLUTO.

License:GPL-3.0Stargazers:0Issues:0Issues:0

athena-tutorial

Athena MHD examples

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PLUTO

A MHD code from http://plutocode.ph.unito.it/

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pyjnu

Emissivity solver for radiative processes

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pluto_jm

Analysis of PLUTO MHD

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