Implements synchrotron emission from cooling electrons
-
Updated
Mar 19, 2021 - Python
Implements synchrotron emission from cooling electrons
A cosmological GRB light curve simulator. Because, why not?
High-performance C++ framework for afterglow modeling with Python bindings. Features fast multi-wavelength light curve generation, MCMC parameter inference, and advanced physics models including shock dynamics, radiation mechanisms, and structured jets. Designed for computational efficiency and scientific workflow integration.
A time-delayed light curve simulation code for GRB location triangulation via random Fourier features.
GRB triangulation via non-stationary time-series models
Deep Learning framework for detecting GRBs
State-of-the-art Code of Gamma-ray Burst Afterglow, A Standard Gamma-ray burst Afterglow Radiation Diagnoser
Suite of code that models fallback accretion onto a magnetar and uses MCMC to fit this to samples of GRBs
This repository contains the code used to perform the analysis described in the paper "Bayesian evidence for spectral lag transition due to Lorentz Invariance Violation for 32 Fermi/GBM Gamma-ray Bursts" (https://www.sciencedirect.com/science/article/pii/S2214404823000460). The code is written in Python 3.10
A notifier for reading the GCN VOEvents and blasting them out
GRB dynamical evolution calculations, refererence Q. Chen & X.W. Liu, MNRAS 504, 1759-1771 (2021)
A repository with my class exercise in MGMT 573 Optimization Modeling with Spreadsheets course at Krannert School of Management, Purdue University.
The automatic GCN NASA circular generator
A simple processeor for SUVI from GRB .
Scalar-Tensor Simulation of Gamma-Ray Bursts (GRBs) within the IDMR-YM Framework.
Add a description, image, and links to the grb topic page so that developers can more easily learn about it.
To associate your repository with the grb topic, visit your repo's landing page and select "manage topics."