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nocliper/README.md

👋 Hi

I'm a researcher at «Wide-Bandgap Materials and Devices Lab» at NUST MISIS. My work is an exploration in the field of Wide-Bandgap semiconductors (Ga2O3, GaN, etc), so we publish some stuff. At the present day I'm a third-year PhD student in Semiconductor Physics, and that's where I keep some of the repositories I use in my work.

🔬 Check this out:

  • nocliper/ilt – The main drawback of the classic DLTS technique is its low resolution of overlapped signals from traps. In classic DLTS a trap is seen as a wide peak and if there is an overlap of two or three of them it is hard to deconvolute and extract data accurately. Instead of using the DLTS time-window concept regularization is imposed. This approach makes Laplace DLTS much more sensitive to noise in comparison with box-car DLTS but gives a huge advantage in peak resolution and traps parameters extraction.

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  1. ilt ilt Public

    🔬 Numerical routines to inverse the Laplace Transform for semiconductor Deep Level Transient Spectroscopy.         To cite: Vasilev, A. (2024). Numerical Inverse Laplace Transform for Deep-Level Tr…

    Jupyter Notebook 6 3

  2. ebic ebic Public

    🔬 Analysis of Electron Beam Collection Current (EBIC) data. Calculating non-equilibrium charge carriers diffusion length

    Jupyter Notebook

  3. tfe-model tfe-model Public

    🔬 Notebook to compute J-V of Schottky barrier using Termionic-Field Emission model with exact barrier shape

    Jupyter Notebook