Tags: drift-diffusion

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  1. 1D Drift Diffusion Model for Crystalline Solar Cells

    16 Apr 2011 | | Contributor(s):: Dragica Vasileska, Xufeng Wang, Shankar Ramakrishnan

    Simulate a 1D solar cell of crystalline material with drift diffusion equations

  2. 3 min Research Talk: Predicting and Optimizing Solar Cell Performance with Material/Surface Characteristics

    31 Jan 2019 | | Contributor(s):: Yiheng Zhu

    Photovoltaic simulation tools can be utilized to predict device performance before fabrication and experimentation, streamline research processes, and interpret experimental results. Therefore, we developed ContourPV, which simulates various combinations of values of different device...

  3. Is there any free licence drift diffusion device simulator that supports MOS and bipolar devices

    Q&A|Open | Responses: 1

    A sequel to this question is : Is Bambi simulator still available ??

    https://nanohub.org/answers/question/39

  4. Newton’s method to solve poisson, continuity, drift diffusion equation?

    Q&A|Closed | Responses: 0

    Hi, I want to solve poisson, continuity, drift diffusion equation with newton's method.

    Is there any material in nanohub that guides me how to do it?

    https://nanohub.org/answers/question/1709

  5. Simulation time

    Q&A|Closed | Responses: 1

    Do not know why, but despite the 21 points simulation asked (default), the simulation actually calculates ~500 voltage points and the simulation last 15-30’. Did I miss something ?

    https://nanohub.org/answers/question/1103

  6. A Matlab 1D-Poisson-drift-diffusion simulator for semiconductor devices

    04 Mar 2024 | | Contributor(s):: Chien-Ting Tung

    A Matlab 1D-Poisson-Drift-Diffusion solver that can simulate basic semiconductor devies such as PN diode, Schottky diode, MOS capacitor... It solves Poisson-Drift-Diffusion with finite difference method, Slotboom variable, and Gummel iteration. I provide 4 examples: PN diode,...

  7. A Matlab 2D-Poisson-drift-diffusion simulator for semiconductor devices

    04 Mar 2024 | | Contributor(s):: Chien-Ting Tung

    A Matlab 2D-Poisson-Drift-Diffusion solver for simple MOSFETs. It uses finite difference method, Slotboom variable, and Gummel iteration.Boltzmann statistics and velocity saturation is considered. 

  8. a TCAD Lab

    29 Oct 2008 | | Contributor(s):: Gerhard Klimeck, Dragica Vasileska

    An Assembly of TCAD tools for circuit, device, and process simulation

  9. ABACUS - Assembly of Basic Applications for Coordinated Understanding of Semiconductors

    16 Jul 2008 | | Contributor(s):: Xufeng Wang, Daniel Mejia, Dragica Vasileska, Gerhard Klimeck

    One-stop-shop for teaching semiconductor devices

  10. ABACUS Drift-Diffusion-Lab with Bias and Light (Spring 2022)

    04 May 2022 | | Contributor(s):: Gerhard Klimeck

    In the fourth session, Dr. Klimeck will give a brief overview of ABACUS and demonstrate the Drift-Diffusion-Lab. Students can experiment with a semiconductor slab under bias and/or light illumination...

  11. ABACUS Drift-Diffusion-Lab with Bias and Light (Winter 2021)

    08 Dec 2021 | | Contributor(s):: Gerhard Klimeck

    In the fourth session, Dr. Klimeck will give a brief overview of ABACUS and demonstrate the Drift-Diffusion-Lab. Students can experiment with a semiconductor slab under bias and/or light illumination...

  12. ABACUS PN Junctions (Spring 2022)

    04 May 2022 | | Contributor(s):: Gerhard Klimeck

    In this session, Dr. Gerhard Klimeck will give a brief overview of ABACUS and demonstrate the PN Junction Lab. With the PN Junction Lab, students can explore band edge diagrams and charge distributions as a function of bias...

  13. ABACUS PN Junctions (Winter 2021)

    08 Dec 2021 | | Contributor(s):: Gerhard Klimeck

    In this session, Dr. Gerhard Klimeck will give a brief overview of ABACUS and demonstrate the PN Junction Lab. With the PN Junction Lab, students can explore band edge diagrams and charge distributions as a function of bias...

  14. ABACUS Tool Suite and Bulk Semiconductors (Fall 2023)

    01 Sep 2023 | | Contributor(s):: Gerhard Klimeck

    In the third session, Dr. Klimeck will give a brief overview of ABACUS and demonstrate the Drift-Diffusion-Lab. Students can experiment with a semiconductor slab under bias and/or light illumination....

  15. ABACUS Tool Suite and PN Junctions (Fall 2023)

    03 Oct 2023 | | Contributor(s):: Gerhard Klimeck

    Dr. Klimeck will give a brief overview of ABACUS and demonstrate the PN Junction Lab. With the PN Junction Lab, students can explore band edge diagrams and charge distributions as a function of bias.

  16. ABACUS: Test for Drift Diffusion Lab

    11 Aug 2010 | | Contributor(s):: Saumitra Raj Mehrotra, Dragica Vasileska, Gerhard Klimeck

    The objective of this test is to give an idea to a self-learning students or to instructors in the case this test is used in a classroom the level of understanding of this topic when students have gone through the learning material, worked exercises and have completed the assignments and the...

  17. BJT Lab

    06 Feb 2008 | | Contributor(s):: Saumitra Raj Mehrotra, Abhijeet Paul, Gerhard Klimeck, Dragica Vasileska, Gloria Wahyu Budiman

    This tool simulates a Bipolar Junction Transistor (BJT) using a 2D mesh. Powered by PADRE.

  18. Computational and Experimental Study of Transport in Advanced Silicon Devices

    27 Jun 2013 | | Contributor(s):: Farzin Assad

    In this thesis, we study electron transport in advanced silicon devices by focusing on the two most important classes of devices: the bipolar junction transistor (BJT) and the MOSFET. In regards to the BJT, we will compare and assess the solutions of a physically detailed microscopic model to...

  19. David A Ramirez

    https://nanohub.org/members/55634

  20. Diffusion of holes and electrons

    10 Apr 2010 | | Contributor(s):: Saumitra Raj Mehrotra, Gerhard Klimeck

    Diffusion is a process of particles distributing themselves from regions of high- to low- concentrations. In semi-classical electronics these particles are the charge carriers (electrons and holes). The rate at which a carrier can diffuse is called diffusion constant with units of cm2/s. The...