An open source Python package for plasma research and education
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Updated
Jun 28, 2024 - Python
An open source Python package for plasma research and education
Object-oriented Python library for computation of properties of highly-excited Rydbeg states of alkali and divalent atoms.
General Relativistic Atomic Structure Package
Python interface to the CHIANTI atomic database
An extension of Unitful.jl for working with atomic units
A c++ program for high-precision atomic structure calculations of one and two valence systems. Uses Hartree-Fock + correlation potential method. Can calculate ionisation cross sections with large of energy/momentum transfer.
Collection of functions to solve the optical Bloch equations
Python-based average-atom code for simulations of high energy density phenomena such as in warm dense matter.
Rydberg Sensor Interactive Quantum Physics Module
Modelling simple atoms and 87Rb in cavity-QED.
A Python package to help with atomic physics calculations.
Fun simulations and numerical calculations for the everyday physicist.
Dark Matter-induced Atomic Response Code (DarkARC) - A python tool for the calculation and tabulation of atomic response functions for ionization via dark matter-electron scatterings.
Classification of MXenes into metals and non-metals based on physical properties
Computational physics in APL
Implementation of local algorithms within pyscf
Library to calculate Stark and Zeeman maps for Rydberg helium, in either the n,L,S,m_L or n,L,S,J,m_J basis, using the Numerov method.
Provides tables of high-accuracy atomic ionisation factors, which are used to calculate atomic ionisation rates. Example programs calculate dark-matter-electron-induced ionisation rates, and electron-impact ionisation rates
The CPC library version of QPC-TDSE.
Calculation of the expected PDH error signal. Code with 1st order sidebands from many papers, second order fits experimental data but not rigorously derived.
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