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首页> 外文期刊>The European Physical Journal D >An experimental investigation of the trap-dynamics of a cesium magneto-optical trap at high laser intensities
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An experimental investigation of the trap-dynamics of a cesium magneto-optical trap at high laser intensities

机译:铯磁光阱在高激光强度下的俘获动力学实验研究

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We have developed Pakistan’s first magneto optical trap (MOT) in which we were able to capture as many as 2.8 × 109 Cs atoms and attain densities as high as 2 × 1011 atoms/cm3. The trap performance was optimized by varying the laser intensity from 50 mW/cm2 to 500 mW/cm2 as well as the magnetic field gradient from 5 G/cm to 20 G/cm. We have fully investigated the dynamics of the cesium vapor cell magneto-optical trap (VCMOT) by determining the capture rate L (atoms s−1), background collisional loss rate γ (s−1) and intra-trap excited-state collisional loss parameter β (cm3 s−1) of the cesium atoms in the trap. Also, the cloud expansion and compression with trap laser intensity and magnetic field gradient was observed. The MOT dynamics at high intensities is characterized by high capture rate (4 × 109 atoms/s), high densities, enhanced collisional losses (β ∼ 10−11 cm3 s−1) and cloud expansion due to radiation trapping. The intensities used in this study are the highest ever reported with the cesium MOT.
机译:我们开发了巴基斯坦的第一个磁光阱(MOT),在其中可以捕获多达2.8×109 Cs的原子,并且密度高达2×1011原子/ cm3。通过将激光强度从50 mW / cm2更改为500 mW / cm2,并将磁场梯度从5 G / cm更改为20 G / cm,可以优化陷阱性能。我们已经通过确定捕获率L(原子s-1),背景碰撞损失率γ(s-1)和阱内激发态碰撞损失来充分研究了铯蒸气电池磁光阱(VCMOT)的动力学阱中铯原子的参数β(cm3 s-1)。而且,观察到了随着陷阱激光强度和磁场梯度的云膨胀和压缩。高强度的MOT动力学具有高捕获率(4×109原子/秒),高密度,增强的碰撞损失(β〜10-11 cm3 s-1)和由于辐射俘获引起的云扩展的特点。这项研究中使用的强度是铯MOT所报道的最高强度。

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