DocumentCode :
2938826
Title :
Laser cooling of strontium atoms towards the quantum degenerate regime
Author :
Katori, H. ; Ido, T. ; Isoya, Y. ; Kuwata-Gonokami, Makoto
fYear :
2000
fDate :
10-15 Sept. 2000
Abstract :
Summary form only given. All-optical production of quantum degenerate atomic gases has been one of the long-standing targets in laser cooling. We report a novel approach towards this direction based on a narrow-line laser cooling for strontium atoms. By employing two transitions with markedly different dipole moments, i.e., the allowed /sup 1/S/sub 0/-/sup 1/P/sub 1/ (/spl lambda/=461 nm, /spl gamma/=2/spl pi//spl times/32 MHz) and the spin-forbidden /sup 1/S/sub 0/-/sup 3/P/sub 1/ (/spl lambda/=689 nm, /spl gamma/=2/spl pi//spl times/7.6 kHz) transition, thermal strontium atoms were Doppler-cooled down to 400 nK or the photon recoil temperature, in a magneto-optical trap (MOT). Presents the corresponding energy levels for cooling and trapping. The use of a narrow spin-forbidden transition successfully reduced the radiation trapping effects at a high atom density over 10/sup 12//cm/sup 3/, thus enabling us to attain the hitherto high phase space density of 0.01 in a MOT.
Keywords :
Doppler effect; atom-photon collisions; atomic moments; laser cooling; magneto-optical devices; particle traps; quantum optics; radiation pressure; strontium; time of flight spectra; /sup 1/S/sub 0/-/sup 1/P/sub 1/ transition; /sup 1/S/sub 0/-/sup 3/P/sub 1/ transiton; 400 nK; 461 nm; 689 nm; Doppler-cooled atoms; Sr; all-optical production; allowed transition; cooling; dipole moments; energy levels; laser cooling; long-standing targets; magneto-optical trap; magneto-optical traps; narrow spin-forbidden transition; narrow-line laser cooling; phase space density; photon recoil temperature; quantum degenerate atomic gases; quantum degenerate regime; radiation trapping effects; spin-forbidden transition; transitions; trapping; Atom lasers; Atomic beams; Atomic measurements; Cooling; Gas lasers; Gases; Laser transitions; Production; Strontium; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quantum Electronics Conference, 2000. Conference Digest. 2000 International
Conference_Location :
Nice, France
Print_ISBN :
0-7803-6318-3
Type :
conf
DOI :
10.1109/IQEC.2000.907982
Filename :
907982
Link To Document :
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