A c++ library with the purpose to calculate the decomposition of the Yukawa interactions invariants on SO(2N) groups in terms of the SU(N) subgroup.
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Updated
Sep 25, 2023 - C++
A c++ library with the purpose to calculate the decomposition of the Yukawa interactions invariants on SO(2N) groups in terms of the SU(N) subgroup.
Torch implementation of Marc Finzi's Equivariant MLP
Solutions to problems in Gauge Fields, Knots and Gravity
Gauge Fields Interactions Calculator
Algorithm I made accompanying my undergraduate thesis.
Implementation of banana shape distribution paper
Finite-dimensional Lie algebra package for SymPy
Obtaining Heisenberg Algebra from Heisenberg Group
Computes the generators for a given representation of SU2 and SU3.
Differential Equations' LIE symmetries Research InstrUMent
Some work on the paper, "Automated Lie-algebraic input space partitioning using first-order two-dimensional cellular automata" by me (Shrohan Mohapatra. (2020, June 5). Automated Lie-algebraic input space partitioning using first-order two-dimensional cellular automata. Zenodo. http://doi.org/10.5281/zenodo.3880404), here in the specific example…
Notes on Lie algebras and their representation theory.
Tracking aggressive trajectories of a quadrotor on SO3/SE3 manifolds using geometric control strategies. Design-oriented project at BITS-PILANI (Goa Campus), 2021.
grg: Computer Algebra System for Differential Geometry, Gravitation and Field Theory, automatically mirrored from https://reduce-algebra.sourceforge.io/grg32/grg32.php
dimsym: Geometric and algebraic techniques for differential equations (with modelling applications); Symmetry Determination and Linear Differential Equation Package, mirrored from https://www.latrobe.edu.au/mathematics-and-statistics/research/geometric-and-algebraic-techniques-for-differential-equations/dimsym/
An exercise of Base Lie theory in "State Estimation for Robotics"
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