TCAD Semiconductor Device Simulator
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Updated
Aug 16, 2026 - C++
TCAD Semiconductor Device Simulator
Python package to analyse electron density & electrostatic potential grids
Python package to simulate differential absorption spectra of crystals from first principles
Imaging system for analyzing defects of semiconductor wafers and chips
Semiconductor device model, including intermediate band materials and self-consistent optics.
A Python program for calculating the surface SHG yield for semiconductors.
A user friendly solver with GUI for 1D quantum problem and QCL simulation
Framework for the Simulation of Temperature Dependent Semiconductor Parameters in Silicon Solar Cells and their Respective Impact on the Current Density-Voltage Characteristic
Jupyter notebooks outlining theory and calculations for hot polaron cooling in halide perovskite solar cells
This repository contains all major projects completed as part of the EECS 4612: Digital VLSI Design course at York University. The projects showcase the complete ASIC design flow — from RTL design to GDSII layout — using industry-grade tools like Cadence Genus, Innovus, and Virtuoso.
An extensible solar cell modelling framework in python
Port of PISCES TCAD Device Simulator to Linux
Quantum Well Simulator for Semiconductor Modeling
Poisson solver for semiconductor hetero-structures
Fork of GNU Archimedes to add support for III-Nitride materials (GaN, AlN, and AlGaN)
MEMS patent
Bandstructure calculations using the empirical pseudopotential method.
Solve detailed balance model of hot carrier solar cells.
Simulate a 1D nanowire and plot the conductance and band structure
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