GPU Gross-Pitaevskii Equation numerical solver for rapidly rotating Bose-Einstein condensates. Further development and maintenance from https://github.com/GPUE-group/GPUE
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Updated
Feb 21, 2017 - C++
GPU Gross-Pitaevskii Equation numerical solver for rapidly rotating Bose-Einstein condensates. Further development and maintenance from https://github.com/GPUE-group/GPUE
Simple Gross-Pitaevskii Equation solver using FFTW
Fast accurate creation, detection and analysis of quantum vortex distributions.
Numeric simulation of a 2D Bose Einstein condensate
A new paradigm of quantum computing Bosonic
Codebase for simulating the dynamics of Bose-Einstein condensates using C++.
A repository of all my codes and simulations used to teach Intermediate Statistical Mechanics to masters students at the University of Burdwan
Thesis for the Computational Science Master's program at Central Washington University. 3D extension of an analog of cosmological particle creation in a Friedmann-Robertson-Walker universe by numerically simulating a Bose-Einstein condensate with a time-dependent scattering length.
Data and Code Availability -- Universal spectral structure in pendulum-like systems
Bose-Fermi Integral Evaluator for SymPy
A modular Python framework for simulating 2D Bose-Einstein Condensate (BEC) dynamics. Solves the time-dependent Gross-Pitaevskii Equation using the Split-Step Fourier Method (SSFM) to study ground states and collective excitations."
simulate efficient spatial translation of dipole-trapped atom clouds using counterdiabatic driving protocols
Macroscopic Quantum Tunneling Between Acoustic Black and White Holes in the Michel Flow. Analogue-gravity preprint: instanton description of the black-hole/white-hole transition in relativistic spherical accretion. LaTeX source, figures, data.
A collection of routines to analyze the ground-state properties and dynamics of a Bose gas using the Gross-Pitaevskii equation
We show that it is possible to obtain non-maximally entangled states with the use of the bosonic analog of XY Hamiltonian and the methods of quantum optimal control.
Solves 2D Gross-Pitaevskii equations for systems with radial symmetry
Convolutional neural network for finding quantum vortices in Bose-Einstein condensates.
Gradient-based optimization of atom-chip wire currents for BEC transport (MSc thesis, University of Sussex, 2025)
Tools to read .hdf5 and .xsil files generated using XMDS2 and functions to implement Bessel transformations and Bessel quadrature integration
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