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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Nonadiabatic transitions in electrostatically trapped ammonia molecules
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Nonadiabatic transitions in electrostatically trapped ammonia molecules

机译:静电捕获的氨分子中的非绝热转变

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Nonadiabatic transitions are known to be major loss channels for atoms in magnetic traps but have thus far not been experimentally reported upon for trapped molecules. We have observed and quantified losses due to nonadiabatic transitions for three isotopologues of ammonia in electrostatic traps by comparing the trapping times in traps with a zero and a nonzero electric field at the center. Nonadiabatic transitions are seen to dominate the overall loss rate even for the present samples that are at relatively high temperatures of 30 mK. It is anticipated that losses due to nonadiabatic transitions in electric fields are omnipresent in ongoing experiments on cold molecules.
机译:已知非绝热跃迁是磁阱中原子的主要损耗通道,但迄今为止,尚未对捕获的分子进行实验报道。通过比较中心为零电场和非零电场的阱的俘获时间,我们已经观察到并量化了静电阱中氨的三个同位素分子因非绝热跃迁而造成的损失。即使对于目前处于30 mK较高温度下的样品,非绝热跃迁仍占总损耗率的主导。可以预料,由于正在进行的冷分子实验,在电场中由于非绝热跃迁而造成的损失无处不在。

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