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Near-recoil-limited temperatures obtained by laser trapping on the narrow /sup 1/S/sub 0/-/sup 3/P/sub 1/ intercombination transition of neutral strontium

机译:通过在中性锶的窄/ sup 1 / S / sub 0 /-/ sup 3 / P / sub 1 /结合跃迁上进行激光陷获获得的近反冲极限温度

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About 2/spl times/10/sup 7/ neutral strontium atoms have been loaded into a magneto-optical trap (MOT) that uses the narrow (/spl Gamma/=2/spl pi/ 7 kHz) intercombination line at 689 nm as the cycling transition. The atoms are second-stage laser cooled to /spl sim/10 /spl mu/K from an initial 5 mK atomic sample (/spl sim/5/spl times/10/sup 7/ atoms), generated in a vapor cell MOT that employs the strong (/spl Gamma/=2/spl pi/ 32 MHz) cycling transition at 461 nm. To demonstrate the low temperatures of these atoms, optical Ramsey spectroscopy is performed upon the /sup 1/S/sub 0/-/sup 3/P/sub 1/ transition using only two excitation pulses; the time dependence of the fringe contrast indicates an RMS velocity of 3 cm/s for the 689 nm MOT-cooled sample.
机译:大约2 / spl次/ 10 / sup 7 /中性锶原子已装入磁光阱(MOT)中,该阱使用689 nm处的窄(/ spl Gamma / = 2 / spl pi / 7 kHz)组合线作为骑行过渡。从在蒸汽电池MOT中生成的初始5 mK原子样本(/ spl sim / 5 / spl次/ 10 / sup 7 /原子)对原子进行第二阶段激光冷却,使其冷却至/ spl sim / 10 / spl mu / K。采用461 nm的强(/ spl Gamma / = 2 / spl pi / 32 MHz)循环跃迁。为了证明这些原子的低温,仅使用两个激发脉冲对/ sup 1 / S / sub 0 /-/ sup 3 / P / sub 1 /进行了光学拉姆西光谱分析;条纹对比度的时间依赖性表明,对于689 nm MOT冷却的样品,RMS速度为3 cm / s。

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