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Tags: NCN Supported

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supported-badge.png The Network for Computational Nanotechnology (NCN) has identified a list of tools for which we commit the following level of service:

  • monitor support tickets, questions, and wishlists and provide a response within one business day.
  • fix simple bugs within a week.
  • move long term projects and tool improvement requests to a public wish list.

Learn more about NCN Supported

All Categories (1-20 of 51)

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

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

    One-stop-shop for teaching semiconductor device education

    https://nanohub.org/resources/abacus

  2. ABINIT: First-Time User Guide

    09 Jun 2009 | Teaching Materials | Contributor(s): Benjamin P Haley

    This first-time user guide provides an introduction to using ABINIT on nanoHUB. We include a very brief summary of Density Functional Theory along with a tour of the Rappture interface. We...

    https://nanohub.org/resources/6874

  3. Active Media FDTD Nanophotonic Device Simulator

    04 Apr 2008 | Tools | Contributor(s): Baudilio Tejerina, zhengquan zhang, Yunan Zheng, Seng-Tiong Ho

    Modeling and analysis of solid state, molecular or atomic semiconductor photonics media.

    https://nanohub.org/resources/acmenpds

  4. BioMOCA Suite

    04 Feb 2008 | Tools | Contributor(s): David Papke, Reza Toghraee, Umberto Ravaioli, Ankit Raj

    Simulates ion flow through a channel.

    https://nanohub.org/resources/BMCsuite

  5. BJT Lab

    06 Feb 2008 | Tools | 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.

    https://nanohub.org/resources/bjt

  6. Boltzmann Transport Simulator for CNTs

    20 Feb 2008 | Tools | Contributor(s): Zlatan Aksamija, Umberto Ravaioli

    Simulate Electron transport in Single-walled carbon nanotubes using an upwinding discretization of the Boltzmann transport equation in the relaxation time approximation.

    https://nanohub.org/resources/cntbte

  7. Carbon nanotube based fixed-fixed NEMS

    28 Jan 2008 | Tools | Contributor(s): Pradeep Kumar Gudla, Aswin Kannan, Zhi Tang, Narayan Aluru

    Simulates pull-in behavior of Carbon nanotube based NEMS with fixed-fixed boundary conditions, with and without Vander Waal's effect

    https://nanohub.org/resources/CNTNEMSFF

  8. Carbon nanotube based NEMS with cantilever structure

    28 Jan 2008 | Tools | Contributor(s): Pradeep Kumar Gudla, Aswin Kannan, Zhi Tang, Narayan Aluru

    Simulates pull-in behavior of Carbon nanotube based NEMS with cantilever boundary conditions, with and without Vander Waal's effect

    https://nanohub.org/resources/CNTNEMSCANT

  9. Carrier Statistics Lab

    08 Jan 2008 | Tools | Contributor(s): Saumitra Raj Mehrotra, Abhijeet Paul, Gerhard Klimeck

    Calculate the electron & hole density in semiconductors

    https://nanohub.org/resources/fermi

  10. CNDO/INDO

    09 Oct 2007 | Tools | Contributor(s): Baudilio Tejerina, Jeff Reimers

    Semi-empirical Molecular Orbital calculations.

    https://nanohub.org/resources/CNDO

  11. CNT Heterojunction Modeler

    20 Mar 2008 | Tools | Contributor(s): Joe Ringgenberg, Joydeep Bhattacharjee, Jeffrey B. Neaton, Jeffrey C Grossman

    Study the structure and electronic properties of carbon nanotubes with linear heterojunctions.

    https://nanohub.org/resources/heterojunction

  12. CNTbands

    14 Dec 2006 | Tools | Contributor(s): Gyungseon Seol, Youngki Yoon, James K Fodor, Jing Guo, Akira Matsudaira, Diego Kienle, Gengchiau Liang, Gerhard Klimeck, Mark Lundstrom, Ahmed Ibrahim Saeed

    This tool simulates E-k and DOS of CNTs and graphene nanoribbons.

    https://nanohub.org/resources/cntbands-ext

  13. Coarse Grain Lipid Simulator

    31 Jul 2008 | Tools | Contributor(s): Baudilio Tejerina, Elizabeth Brezinski, Martin McCullagh, George C. Schatz

    CGLS is a tool intended to aid in the modeling, construction and analysis of lipid systems.

    https://nanohub.org/resources/cgls

  14. Crystal Viewer Tool

    22 Dec 2007 | Tools | Contributor(s): Yuanchen Chu, Daniel F Mejia, James Fonseca, Michael Povolotskyi, Gerhard Klimeck

    Visualize different crystal lattices and planes

    https://nanohub.org/resources/crystal_viewer

  15. Crystal Viewer V3.0 First Time User Guide

    28 Jan 2015 | Papers | Contributor(s): Yuanchen Chu, James Fonseca, Michael Povolotskyi, Gerhard Klimeck

    This first-time user guide is an introduction to the Crystal Viewer Tool V3.0.

    https://nanohub.org/resources/21850

  16. Drift Diffusion Lab: First-Time User Guide

    13 Jun 2009 | Teaching Materials | Contributor(s): Saumitra Raj Mehrotra, Benjamin P Haley

    This first-time user guide provides introductory material to Drift Diffusion Lab on nanoHUB. It includes a tour of the Rappture interface, which notes key inputs and typical outputs. It also...

    https://nanohub.org/resources/6902

  17. Drift-Diffusion Lab

    22 Jan 2008 | Tools | Contributor(s): Saumitra Raj Mehrotra, Abhijeet Paul, Gerhard Klimeck, Gloria Wahyu Budiman

    Simulate single semiconductor characteristics

    https://nanohub.org/resources/semi

  18. Effect of Doping on Semiconductors

    10 Sep 2008 | Tools | Contributor(s): Umberto Ravaioli, Nahil Sobh, Mohamed Mohamed

    effects of doping in bulk silicon.

    https://nanohub.org/resources/dopingsilicon

  19. EPR - ESR

    14 Apr 2009 | Tools | Contributor(s): Baudilio Tejerina, Joshua Telser

    This program calculates the powder pattern EPR spectra of a 2-spin electronic system.

    https://nanohub.org/resources/dpowj

  20. Illinois Solid State Electronic Devices Classes Tools

    26 Jul 2008 | Tools | Contributor(s): Mohamed Mohamed, Nahil Sobh

    Tools to complement Illinois Solid State Electronic Devices Classes

    https://nanohub.org/resources/deviceelectron

nanoHUB.org, a resource for nanoscience and nanotechnology, is supported by the National Science Foundation and other funding agencies. Any opinions, findings, and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of the National Science Foundation.