Differences

This shows you the differences between two versions of the page.

Link to this comparison view

Both sides previous revisionPrevious revision
Next revision
Previous revision
Next revisionBoth sides next revision
links [2019/02/01 17:12] janettatelinks [2019/03/04 11:27] janettate
Line 1: Line 1:
 ====== Useful Links ====== ====== Useful Links ======
 ===== Band structure ===== ===== Band structure =====
-    * [[http://www.wien2k.at/|Wien 2k]] developer website. +    * [[http://www.openmx-square.org/|Open MX]] website. You will use OpenMX for your band structure calculations.
     * [[http://www.bandstructure.jp/Table/simptab.html|Band structures of elements]] a periodic table that shows band structures of all the elements in their solid forms.        * [[http://www.bandstructure.jp/Table/simptab.html|Band structures of elements]] a periodic table that shows band structures of all the elements in their solid forms.   
-    * [[http://fermi.la.asu.edu/schmidt/applets/kp/plugkp.html|Kronig-Penney model Applet]]. This is an alternative approach to finding molecular wave functions.  It solves the Schroedinger eigenvalue equation in a periodic, square potential well system. +    * [[https://www.falstad.com/qm1dcrystal/|Kronig-Penney model Applet]]. This is an alternative approach to finding molecular wave functions.  It solves the Schroedinger eigenvalue equation in a periodic, square potential well system. 
-    * [[http://materialsproject.org|The Materials Project]] Explore many materials, including band structure, phase diagrams and more.  CIF files available.+    * [[http://materialsproject.org|The Materials Project]] Explore many materials, including band structure, phase diagrams and more.  CIF files available. (You have to register).
  
 ===== Crystal structure ===== ===== Crystal structure =====
     * [[http://winter.group.shef.ac.uk/orbitron/|Atomic and molecular orbitals]] from the Sheffield site.  Nice pictures and animations.     * [[http://winter.group.shef.ac.uk/orbitron/|Atomic and molecular orbitals]] from the Sheffield site.  Nice pictures and animations.
 +    
 +    * Basic tutorial on [[https://www.doitpoms.ac.uk/tlplib/crystallography3/index.php|unit cells, lattices, symmetry]] - Cambridge University DoITPoMS.
  
-    * You can view and rotate [[http://www.ibiblio.org/e-notes/Mview/Cubic.htm|cubic lattices]] at this site.+    * Basic tutorial on [[https://www.doitpoms.ac.uk/tlplib/brillouin_zones/zone_construction.php|Brillouin zone construction for 2-D square & hexagonal lattice lattice]] - Cambridge University DoITPoMS.
          
-    * A nice site with [[http://www.princeton.edu/~cavalab/tutorials/public/structures/index.html|structure information]] for the perovskite, pyrochlore, rutile & spinel structures  +    * [[http://www.princeton.edu/~cavalab/tutorials/public/structures/index.html|Structure information]] for the perovskite, pyrochlore, rutile & spinel structures 
- +
-    * A succinct [[http://epswww.unm.edu/xrd/xrdclass/04-Crystalography-for-XRD.pdf|introduction to crystallography]] by J.R. Connolly for people with little background in crystallography. +
  
     * [[http://www.cryst.ehu.es/|Bilbao crystal server]].  Find space groups and reciprocal lattices.     * [[http://www.cryst.ehu.es/|Bilbao crystal server]].  Find space groups and reciprocal lattices.
Line 21: Line 21:
     * [[http://www.crystallography.net/index.php|Crystallography Open Data Base]] - several cif files.     * [[http://www.crystallography.net/index.php|Crystallography Open Data Base]] - several cif files.
  
-    * Basic tutorial on [[https://www.doitpoms.ac.uk/tlplib/crystallography3/index.php|unit cells, lattices, symmetryfrom Cambridge University.+    * Wikipedia article on [[https://en.wikipedia.org/wiki/Brillouin_zone|3D Brillouin zones]is useful for choosing paths in k-space.
  
  
 ===== Semiconductors ===== ===== Semiconductors =====
- +    * [[https://www.doitpoms.ac.uk/tlplib/semiconductors/index.php|Introduction to semiconductors]] Cambridge University DoITPoMS
-    Basic tutorial on [[https://www.doitpoms.ac.uk/tlplib/brillouin_zones/zone_construction.php|Brillouin zone construction for 2-D square & hexagonal lattice lattice]] from Cambridge University.     +    * Compilation of [[http://www.ioffe.rssi.ru/SVA/NSM/|semiconductor properties from the Ioffe Institute]] 
-    * Nice compilation of [[http://www.ioffe.rssi.ru/SVA/NSM/|semiconductor properties from the Ioffe Institute]] in Russia  +    * Compilation of [[http://www.semiconductors.co.uk|II-VI (and other) semiconductor properties]] by D. W. Palmer
-    * For II-VI (and other) semiconductors, see the page by [[http://www.semiconductors.co.uk|D. W. Palmer]]+
  
 ===== Phonons ===== ===== Phonons =====
Line 64: Line 63:
   * [[https://journals.aps.org/about|Physical Review Online]]. Of the Phys. Rev. journals, [[http://journals.aps.org/prb/|Phys. Rev. B ]] is comprehensive and devoted to solid state physics. Also look at [[https://journals.aps.org/prx/|Phys. Rev X]] (interdisciplinary, high-profile), [[http://journals.aps.org/prapplied/|Physical Review Applied]] (materials, nanoscience, surfaces and interfaces, devices etc), [[https://journals.aps.org/prmaterials/|Phys. Rev Materials]] (materials).   * [[https://journals.aps.org/about|Physical Review Online]]. Of the Phys. Rev. journals, [[http://journals.aps.org/prb/|Phys. Rev. B ]] is comprehensive and devoted to solid state physics. Also look at [[https://journals.aps.org/prx/|Phys. Rev X]] (interdisciplinary, high-profile), [[http://journals.aps.org/prapplied/|Physical Review Applied]] (materials, nanoscience, surfaces and interfaces, devices etc), [[https://journals.aps.org/prmaterials/|Phys. Rev Materials]] (materials).
  
-  * [[http://arjournals.annualreviews.org/loi/conmatphys|Annual Review of Condensed Matter Physics]] is a new addition to the "Annual Review" Series of journals (also Mat. Sci , Chemistry etc).  good place to find summaries of quickly-developing fields by very respected authors.+  * [[http://arjournals.annualreviews.org/loi/conmatphys|Annual Review of Condensed Matter Physics]] is a new addition to the "Annual Review" Series of journals (also Mat. Sci , Chemistry etc). [[https://journals.aps.org/rmp///example.com|Reviews of Modern Physics]] is another good place to find summaries of quickly-developing fields by very respected authors.
  
 ===== Mathematica ===== ===== Mathematica =====

QR Code
QR Code links (generated for current page)