25 results for “topic:solitons”
Lugiato-Lefever Equation Solver
Coupled Generalized Nonlinear Schrodringer Equation solver for birefringent fibers
Idealized Korteweg-de Vries (KdV) soliton solver with pseudo-spectral methods and Numba acceleration.
PQS Research Project
Physics research from my graduate studies at UCLA
Solving dark matter solitons in an automated way.
Solving KdV equation with finite difference optimized compact scheme for first- and third-derivatives
Fast and accurate 1D NLSE solver using pseudo-spectral methods. Simulates solitons, breathers, and nonlinear wave phenomena with adaptive time-stepping and conservation law monitoring.
No description provided.
ME 69700 – Nonlinear Wave Mechanics
A solution, written in C, to Korteweg de Vries using the fourth order Runge-Kutta method and finite differences.
ソリトン波
This repository contains the Mathematica files of arXiv:1901.06659
Symplectic pseudo-spectral solver for (1+1)D nonlinear Klein-Gordon equation with topological solitons, breathers, and Numba acceleration.
Code to compare analytical vs experimental soliton speeds
Iterative solvers for solitary wave solutions of nonlinear Schrödinger-type equations
Supplementary data analysis scripts for the sangkuriang KdV soliton solver, including conservation validation, spectral analysis, and recurrence quantification.
Architecture réseau post-Von Neumann fusionnant le routage biologique du Physarum, la géométrie hyperbolique et la synchronisation par cristaux temporels pour l'informatique exotique
Conjunto de programas de FORTRAN 95 y Python para la simulación del sistema Fermi-Pasta-Ulam-Tsingou (FPUT).
Python scripts for statistical analysis and visualization of nonlinear Klein-Gordon equation solutions generated by the amangkurat solver, including entropy metrics, spatiotemporal evolution plots, and phase space analysis.
Spectral Electromagnetic Confinement Theory (SECT). Teoría de campo clásica efectiva para solitones electromagnéticos topológicos autoconfinados, independiente de QCD/Higgs.
Repository for my bachelor thesis and consecutive research on the soliton automata model.
Ultronic Medium Hypothesis: Simulations unifying gauge theory, GR, and cosmology
LSP-1 : Architecture memcomputing full-stack bio-mimétique. Remplace le courant électronique par le transport protonique (Grotthuss) et les solitons de Davydov. Utilise la frustration géométrique du réseau de Kagome pour atteindre une efficacité proche de la réversibilité thermodynamique.
🔬 Explore innovative thermodynamic principles in sailing, leveraging topological dynamics for enhanced energy efficiency and stability at biological temperatures.