Difference between revisions of "Light forces"

From amowiki
Jump to navigation Jump to search
imported>Ketterle
imported>Ketterle
Line 1: Line 1:
https://cua-admin.mit.edu:8443/wiki/images/8/88/2009-04-06-Light_Forces.pdf
+
* [[Light forces from steady-state solutions]]
 +
**          [https://cua-admin.mit.edu:8443/wiki/images/8/88/2009-04-06-Light_Forces.pdf 2009 Class notes]
 +
**  see  API pp. 370 - 379
 +
** Further reading on friction force in a standing wave
 +
** C. Cohen-Tannoudji, Les Houches 1990, pp. 34-35
 +
** J.P. Gordon and A. Ashkin, PRA 21, 1606 (1980)
  
* [[Light forces from steady-state solutions]]
+
* [[The spontaneous light force]]
* [[Dipole force and dissipation]]
+
* [[Dipole forces and the dressed atom picture]]
  
 
<categorytree mode=pages style="float:right; clear:right; margin-left:1ex; border:1px solid gray; padding:0.7ex; background-color:white;" hideprefix=auto>8.422</categorytree>
 
<categorytree mode=pages style="float:right; clear:right; margin-left:1ex; border:1px solid gray; padding:0.7ex; background-color:white;" hideprefix=auto>8.422</categorytree>
  
== Handouts ==
+
== 2007 Handouts ==
 
 
 
 
* Mean radiation forces API pp. 370 - 379
 
** Further reading on friction force in a standing wave
 
** C. Cohen-Tannoudji, Les Houches 1990, pp. 34-35
 
** J.P. Gordon and A. Ashkin, PRA 21, 1606 (1980)
 
 
* The dressed atom approach
 
* The dressed atom approach
 
**            Reading:  API Chapter VI – worth reading!
 
**            Reading:  API Chapter VI – worth reading!
* Dipole forces within the dressed atom picture
+
 
 
** Lecture notes
 
** Lecture notes
 
** Important paper: J. Dalibard and C. Cohen-Tannoudji, J. Opt. Soc. Am .B 2, 1707 (1985)
 
** Important paper: J. Dalibard and C. Cohen-Tannoudji, J. Opt. Soc. Am .B 2, 1707 (1985)

Revision as of 05:04, 7 April 2009

2007 Handouts

  • The dressed atom approach
    • Reading: API Chapter VI – worth reading!
    • Lecture notes
    • Important paper: J. Dalibard and C. Cohen-Tannoudji, J. Opt. Soc. Am .B 2, 1707 (1985)
  • Spontaneous light force traps
    • Magneto-optical trap, Optical Earnshaw theorem
    • Reading: pp. 316-335 of the paper which was already used in lecture 1
      • (Nice summary on both dipole traps and radiation pressure traps)
        • W.D. Phillips, Laser cooling and trapping of neutral atoms, in Laser Manipulation of Atoms and Ions, edited by E. Arimondo, W.D. Phillips, and F. Strumia, Proceedings of the International School of Physics “Enrico Fermi”, Course CXVIII (North-Holland, Amsterdam, 1992) Download
      • Original papers:
        • Optical Earnshaw theorem (OET): Ashkin and Gordon
        • How to circumvent the OET: Pritchard et al.
        • Realization of the MOT: Raab et al.