<--- Back to Details
First PageDocument Content
Crystallography / Chemistry / Physics / Condensed matter physics / Lattice points / Diffraction / Fourier analysis / Reciprocal lattice / Bloch wave / Lattice / Brillouin zone / Superlattice
Date: 2014-09-03 06:19:49
Crystallography
Chemistry
Physics
Condensed matter physics
Lattice points
Diffraction
Fourier analysis
Reciprocal lattice
Bloch wave
Lattice
Brillouin zone
Superlattice

8 Quantum Cluster Methods Erik Koch Computational Materials Science German Research School for Simulation Sciences

Add to Reading List

Source URL: www.cond-mat.de

Download Document from Source Website

File Size: 1,01 MB

Share Document on Facebook

Similar Documents

8  Quantum Cluster Methods Erik Koch Computational Materials Science German Research School for Simulation Sciences

8 Quantum Cluster Methods Erik Koch Computational Materials Science German Research School for Simulation Sciences

DocID: 1qxfI - View Document

8  The Lanczos Method Erik Koch Computational Materials Science German Research School for Simulation Sciences

8 The Lanczos Method Erik Koch Computational Materials Science German Research School for Simulation Sciences

DocID: 1pIEI - View Document

10 The Lanczos Method Erik Koch Computational Materials Science German Research School for Simulation Sciences Julich ¨

10 The Lanczos Method Erik Koch Computational Materials Science German Research School for Simulation Sciences Julich ¨

DocID: 1pI4i - View Document

3  NMTOs and their Wannier Functions Ole K. Andersen Max Planck Institute for Solid State Research Heisenbergstrasse 1, DStuttgart

3 NMTOs and their Wannier Functions Ole K. Andersen Max Planck Institute for Solid State Research Heisenbergstrasse 1, DStuttgart

DocID: 1oPji - View Document

Efficient analysis of deep high-index-contrast gratings under arbitrary illumination Nojan Motamedi,1,* Amir Shlivinski,2 Joseph E. Ford,1 and Vitaliy Lomakin1 1  2

Efficient analysis of deep high-index-contrast gratings under arbitrary illumination Nojan Motamedi,1,* Amir Shlivinski,2 Joseph E. Ford,1 and Vitaliy Lomakin1 1 2

DocID: 1oEzO - View Document