<NEEDS MAJOR UPDATE> Simulations of electromagnetic waves - easier scripting, postprocessing and field export
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Updated
Sep 3, 2019 - Python
<NEEDS MAJOR UPDATE> Simulations of electromagnetic waves - easier scripting, postprocessing and field export
Finding metametrial structure by NSGA genetic algorithm with ABAQUS CAE
This python code computes reflection and transmission coefficients of light through planar multilayered systems with uni-axial optical properties
Code for "Evolution of Acoustic Logic Gates in Granular Metamaterials", Parsa et al., EvoApplications 2022
Research-stage results; see docs/ for validation, benchmarks, and uncertainty notes.
Code for "Evolving Programmable Computational Metamaterials", Parsa et al., GECCO 2022
Code for "Gradient-based Design of Computational Granular Crystals", Parsa et al.
# Casimir Tunable Permittivity Stacks β Research Prototype
Code for "Universal Mechanical Polycomputation in Granular Matter", Parsa et al., GECCO 2023
# Enhanced Simulation Hardware Abstraction Framework
# Casimir Nanopositioning Platform (Research Prototype)
Revolutionary real-time control system for dynamic warp bubble stability, integrating seven advanced digital twin mathematical frameworks with enhanced uncertainty quantification, achieving 99.9% temporal coherence, 1.2Γ10ΒΉβ°Γ metamaterial amplification, and sub-millisecond field transition control with complete causality preservation.
Production-ready warp field coils with Enhanced Field β LQG Metric Controller integration. Features polymer-enhanced Maxwell equations, real-time field-metric coordination, medical-grade safety, and comprehensive Loop Quantum Gravity corrections.
Design and Implementation of a Microwave Laboratory for Composite Material Testing
Measuring magneto-impedance in ferromagnetic wires subjected to external stimuli such as magnetic field, tensile stress, and temperature
A canonical architectural blueprint for self-sustaining hybrid quantum computational systems that utilize noise as a computational resource.
Fenicsx Python FEM Project to compute cell homogenization and effective Stiffness Matrix
Revolutionize precision NEMS/MEMS with Casimir anti-stiction metasurface coatings, achieving 98% stiction reduction and enhanced performance. ππ§
Tunable permittivity stacks enable precise electromagnetic control through advanced metamaterials. Explore our digital twin framework for sub-1% accuracy. ππ»
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