An open source Python package for plasma research and education
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Updated
Jun 4, 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
Python-based average-atom code for simulations of high energy density phenomena such as in warm dense matter.
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.
Modelling simple atoms and 87Rb in cavity-QED.
A Python package to help with atomic physics calculations.
Computational physics in APL
Collection of functions to solve the optical Bloch equations
Fun simulations and numerical calculations for the everyday physicist.
simulate efficient spatial translation of dipole-trapped atom clouds using counterdiabatic driving protocols
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.
Rydberg Sensor Interactive Quantum Physics Module
Automatization project for Dr. Gillen's lab
The Atomic Structure Package (ATSP) - book code version
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.
Classification of MXenes into metals and non-metals based on physical properties
Create animations of the Rydberg electron charge distribution in helium as a function of electric field using the Numerov method
Calculate elastic electron atom scattering (EEAS) phase shifts in solid materials for LEED modelling
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