Tools for analyzing and viewing particle data in the openPMD standard, extension beamphysics.
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Updated
Jun 29, 2026 - Python
Tools for analyzing and viewing particle data in the openPMD standard, extension beamphysics.
Code for the assignments for the Computational Neuroscience Course BT6270 in the Fall 2018 semester
Import, analysis, and export of particle phase space data
A library for fast simulations of Gaussian quantum information.
Lorentz Invariant Phase Space
A work-in-progress web application for ProADV. This project aims to revive the ProADV website, providing a user-friendly interface for the Python package that processes and analyzes acoustic Doppler velocimeter (ADV) data.
Sampling quantum phase space distributions
C++ library and utilities (with Python bindings) for reading/writing particle phase space data for Medical Physics or Particle Physics applications.
Construct Paths through Phase-Space Points
Code from the study "Ghost channels and ghost cycles guiding long transients in dynamical systems"
Particle Phase Space Analysis Toolkit
Fun with chaos! An interactive stroboscopic phase space of the classic kicked rotor system
This repository contains supplementary material for the manuscript under the same title, refer to arXiv:2008.06481
Phase-space, spectral, and recursive mathematics.
🌀 Illustration of the Lorenz System
Calculating and plotting the trajectory in the phase space for a simple pendulum through numerical analysis.
Deterministic, capacity-aware routing for modern systems.
Process-intelligence framework for health-trajectory maintenance. Shifting healthcare from state-diagnosis to phase-coherence via quantum sensing (SiC/NV), symplectic dynamics, and bio-resonant synchronization. Validated through mycelial electrophysiology (2026) and Zero-Build protocols. From Data Architecture to Existence Architecture.
Supplementary Python code for statistical analysis and visualization of 1D quantum tunneling simulations comparing rectangular and Gaussian barrier scenarios.
A Python library for calculating electronic states and vibronic energy gaps using a phase space framework, ensuring higher accuracy and momentum conservation in quantum chemistry simulations.
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