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 [2014/03/30 13:02] tatelinks [2019/02/01 15:30] janettate
Line 4: Line 4:
     * [[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.     * [[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.
 +    * [[http://materialsproject.org|The Materials Project]] Explore many materials, including band structure, phase diagrams and more.  CIF files available.
  
 ===== Crystal structure ===== ===== Crystal structure =====
Line 20: Line 21:
     * [[http://database.iem.ac.ru/mincryst/index.php|Crystallographic and Crystallochemical Database for Minerals and their Structural Analogues]].  Maintained by the Russian Academy of Sciences.  Space groups, Wyckoff positions, diffraction info for minerals.  Searchable periodic table.     * [[http://database.iem.ac.ru/mincryst/index.php|Crystallographic and Crystallochemical Database for Minerals and their Structural Analogues]].  Maintained by the Russian Academy of Sciences.  Space groups, Wyckoff positions, diffraction info for minerals.  Searchable periodic table.
  
-    * Portland State U'[[http://nanocrystallography.research.pdx.edu/search.py/index|Crystallographic database]].  Get cif files for free!+    * [[http://www.crystallography.net/index.php|Crystallography Open Data Base]] - several cif files.
  
     * Applet that demonstrates the [[http://www.applet-magic.com/brillouin.htm|construction of the first few Brillouin zones of a 2-D square lattice]].  Also discusses the Fermi surface (requires Java).     * Applet that demonstrates the [[http://www.applet-magic.com/brillouin.htm|construction of the first few Brillouin zones of a 2-D square lattice]].  Also discusses the Fermi surface (requires Java).
Line 33: Line 34:
 ===== Phonons ===== ===== Phonons =====
  
-    * Java applet with interactive features demonstrating acoustic and optic [[http://dept.kent.edu/projects/ksuviz/leeviz/phonon/phonon.html|phonon modes]] of diatomic chain. +    * Java applet with interactive features demonstrating acoustic and optic [[http://dept.kent.edu/projects/ksuviz/leeviz/phonon/phonon.html|phonon modes]] of diatomic chain (requires java)
  
     * Dispersion relations and animations of [[http://www.phonon.fc.pl/index.php|phonon modes]] in several different crystals.  Also surface phonons.     * Dispersion relations and animations of [[http://www.phonon.fc.pl/index.php|phonon modes]] in several different crystals.  Also surface phonons.
Line 43: Line 44:
     * Data base of [[http://www.phys.ufl.edu/fermisurface/|Fermi surface]]pictures     * Data base of [[http://www.phys.ufl.edu/fermisurface/|Fermi surface]]pictures
  
-    * Solid state simulations.  [[http://www.physics.cornell.edu/sss/drude/drude.html|Drude model]] is nice.+    * Solid state simulations fron Cornell University. [[http://pages.physics.cornell.edu/sss/drude/drude.html|Drude model]] is nice. 
        
     * [[http://ab-initio.mit.edu/photons/|MIT group photonic crystal research]]. Nice pictures.     * [[http://ab-initio.mit.edu/photons/|MIT group photonic crystal research]]. Nice pictures.
Line 78: Line 79:
 ===== OSU seminars ===== ===== OSU seminars =====
 Not part of the course, but watch these for relevant topics ... Not part of the course, but watch these for relevant topics ...
-    * The physics [[http://www.physics.oregonstate.edu/events-SSO|Solid State and Optics Seminar]]  meets W 4:00 - 5:00 pm in WGR 304.  +    * The physics [[https://physics.oregonstate.edu/events_sso|Solid State and Optics Seminar]]  meets W 4:00 - 5:00 pm in WGR 304.  
     * The [[http://matsci.oregonstate.edu/seminars.php|Materials Science Seminar]] meets Th 3:00 - 4:00 pm in Weniger 149 (S14 focus is on computational nuclear materials).      * The [[http://matsci.oregonstate.edu/seminars.php|Materials Science Seminar]] meets Th 3:00 - 4:00 pm in Weniger 149 (S14 focus is on computational nuclear materials). 
-    * The [[http://www.physics.oregonstate.edu/events-colloquia|physics colloquium]] meets M 4:00 - 5:00 pm in WGR 116. +    * The [[https://physics.oregonstate.edu/Future-colloquia]] meets M 4:00 - 5:00 pm in WGR 116. 
-    * [[http://chemistry.oregonstate.edu|Chemistry seminars]] are sometimes relevant (times vary).+  
  

QR Code
QR Code links (generated for current page)