2003
DOI: 10.1364/josab.20.000968
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Cooling and trapping of atomic strontium

Abstract: We present a detailed investigation of strontium magneto-optical trap (MOT) dynamics. Relevant physical quantities in the trap, such as temperature, atom number and density, and loss channels and lifetime, are explored with respect to various trap parameters. By studying the oscillatory response of a two-level 1 S 0 -1 P 1 88 Sr MOT, we firmly establish the laser cooling dynamics predicted by Doppler theory. Measurements of the MOT temperature, however, deviate severely from Doppler theory predictions, implyin… Show more

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Cited by 118 publications
(113 citation statements)
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“…An interesting strategy to overcome this obstacle is to work with metastable alkaline-earth atoms in their lowest (nsnp) 3 P 2 state [18,19], which have radiative lifetimes of the order of ten minutes [20]. The experimental feasibility of magnetic trapping of metastable 88 Sr has already been demonstrated [21,22,23].…”
Section: Introductionmentioning
confidence: 99%
“…An interesting strategy to overcome this obstacle is to work with metastable alkaline-earth atoms in their lowest (nsnp) 3 P 2 state [18,19], which have radiative lifetimes of the order of ten minutes [20]. The experimental feasibility of magnetic trapping of metastable 88 Sr has already been demonstrated [21,22,23].…”
Section: Introductionmentioning
confidence: 99%
“…As a specific example, we will consider the case of the fermionic isotope 87 Sr of strontium where the energy splitting between hyperfine components is comparable to the widths of the resonances themselves [31]. Fig.…”
Section: B Multiple Excited Statesmentioning
confidence: 99%
“…53 Cr [9] with hyperfine spin 3/2; and 40 K [10], 173 Yb [11], 43 Ca [12], 87 Sr [13], 133 Cs [14,15] with more higher ones. Using the Feshbach resonance [16,17] and confinement induced resonance [18] technique, the interactions among the atoms can be manipulated.…”
Section: Introductionmentioning
confidence: 99%