Tags: band structure

Description

In solid-state physics, the electronic band structure of a solid describes ranges of energy that an electron is "forbidden" or "allowed" to have. It is a function of the diffraction of the quantum mechanical electron waves in the periodic crystal lattice with a specific crystal system and Bravais lattice. The band structure of a material determines several characteristics, in particular its electronic and optical properties. More information on Band structure can be found here.

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  1. ECE 695NS Lecture 5: Bandstructures for Electro-optic Systems

    27 Jan 2017 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Bandstructure problem Bloch's theorem Photonic bandstructures 1D 2D

    https://nanohub.org/resources/25679

  2. ECE 695NS Lecture 6: Photonic Bandstructures

    27 Jan 2017 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Bandstructure symmetries 2D Photonic bandstructures Photonic waveguide bandstructures Photonic slab bandstructures 3D Photonic lattice types + bandstructures

    https://nanohub.org/resources/25680

  3. ECE 695NS Lecture 7: Photonic Bandstructure Calculations

    27 Jan 2017 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Maxwell eigenproblem Matrix decompositions Reformulating the eigenproblems Iterative eigensolvers Conjugate gradient solvers Preconditioners Davidson...

    https://nanohub.org/resources/25681

  4. NEMO5, a Parallel, Multiscale, Multiphysics Nanoelectronics Modeling Tool
: From Basic Physics to Real Devices and to Global Impact on nanoHUB.org

    10 Nov 2016 | Online Presentations | Contributor(s): Gerhard Klimeck

    The Nanoelectronic Modeling tool suite NEMO5 is aimed to comprehend the critical multi-scale, multi-physics phenomena and deliver results to engineers, scientists, and students through efficient...

    https://nanohub.org/resources/25281

  5. Electronic Structure of Monolayer MoS2

    Collections | 31 Oct 2016 | Posted by David M Guzman

    https://nanohub.org/groups/materials/collections/saved-materials-science-runs

  6. Electronic Structure of Bulk MoS2

    Collections | 31 Oct 2016 | Posted by David M Guzman

    https://nanohub.org/groups/materials/collections/saved-materials-science-runs

  7. Si band structure sequence

    Collections | 30 Oct 2016 | Posted by Tanya Faltens

    https://nanohub.org/groups/materials/collections/saved-materials-science-runs

  8. NEMO5 and 2D Materials: Tuning Bandstructures, Wave Functions and Electrostatic Screening

    19 Oct 2016 | Online Presentations | Contributor(s): Tillmann Christoph Kubis

    In this talk, I will briefly discuss the MLWF approach and compare it to DFT and atomistic tight binding. Initial results using the MLWF approach for 2D material based devices will be discussed...

    https://nanohub.org/resources/25114

  9. NEMO5, a Parallel, Multiscale, Multiphysics Nanoelectronics Modeling Tool


    19 Sep 2016 | Online Presentations | Contributor(s): Gerhard Klimeck

    The Nanoelectronic Modeling tool suite NEMO5 is aimed to comprehend the critical multi-scale, multi-physics phenomena and deliver results to engineers, scientists, and students through efficient...

    https://nanohub.org/resources/24932

  10. E304 L6.1.1: Nanoelectrics - Electron Energy Bands

    19 Apr 2016 | Online Presentations

    https://nanohub.org/resources/24001

  11. DFT Material Properties Simulator

    10 Aug 2015 | Tools | Contributor(s): Gustavo Javier, Usama Kamran, David M Guzman, Alejandro Strachan

    Compute electronic and mechanical properties of materials from DFT calculations with 1-Click

    https://nanohub.org/resources/dftmatprop

  12. Band structure error in InAs UTB devices

    Closed | Responses: 0

    Dear Sir/Madam,

    first of all, I would like to thank you to have developed and made ​​available online this tool. Currently, I’m interested in the study of the band structure of https://nanohub.org/answers/question/1328

  13. Christopher Browne

    https://nanohub.org/members/95196

  14. ECE 595E Lecture 23: Electronic Bandstructures

    27 Mar 2013 | Online Presentations | Contributor(s): Peter Bermel

    Outline: 3D Lattice Types Full 3D Photonic Bandgap Structures Yablonovite Woodpile Inverse Opals Rod-Hole 3D PhCs

    https://nanohub.org/resources/17194

  15. PHYS 620 Lecture 5: Diamond and Zincblende Semiconductors: Band Structure

    26 Mar 2013 | Online Presentations | Contributor(s): Roberto Merlin

    https://nanohub.org/resources/16824

  16. ECE 595E Lecture 25: Further Bandstructure Simulation Tools

    21 Mar 2013 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Recap from Wednesday Periodic Potential Lab Basic principles Input Interface Exemplary Outputs CNTbands Basic principles Input Interface Exemplary Outputs

    https://nanohub.org/resources/17308

  17. ECE 595E Lecture 21: 3D Bandstructures

    19 Mar 2013 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Recap from Monday Bandstructure Symmetries 2D Photonic Bandstructures Periodic Dielectric Waveguides Photonic Crystal Slabs

    https://nanohub.org/resources/17193

  18. ECE 595E Lecture 24: Electronic Bandstructure Simulation Tools

    19 Mar 2013 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Electronic bandstructure lab Basic Principles Input Interface Exemplary Outputs Density functional theory (DFT) DFT in Quantum ESPRESSO

    https://nanohub.org/resources/17307

  19. ECE 595E Lecture 22: Full 3D Bandgaps

    06 Mar 2013 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Recap from Wednesday 3D Lattice Types Full 3D Photonic Bandgap Structures Yablonovite Woodpile Inverse Opals Rod-Hole 3D PhCs

    https://nanohub.org/resources/17195

  20. ECE 595E Lecture 20: Bandstructure Concepts

    06 Mar 2013 | Online Presentations | Contributor(s): Peter Bermel

    Outline: Recap from Friday Bandstructure Problem Formulation Bloch’s Theorem Reciprocal Lattice Space Numerical Solutions 1D crystal 2D triangular lattice 3D diamond...

    https://nanohub.org/resources/17192