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BaH molecular spectroscopy with relevance to laser cooling

机译:与激光冷却有关的BaH分子光谱

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We describe a simple experimental apparatus for laser ablation of barium monohydride (BaH) molecules and the study of their rovibrational spectra relevant to direct laser cooling. BaH is a promising candidate for laser cooling and ultracold fragmentation, both of which are precursors to novel experiments in many-body physics and precision measurement. We present a detailed analysis of the properties of ablation plumes that can improve the understanding of surface ablation and deposition technologies. A range of absorption spectroscopy and collisional thermalization regimes has been studied. We directly measured the Franck-Condon factor of the B-2 Sigma(+)(v' = 0) <- X-2 Sigma(+)(v '' = 1) cycling transition. Prospects for production of a high luminosity cryogenic BaH beam are outlined.
机译:我们描述了一种简单的激光烧蚀单氢化钡(BaH)分子的实验设备,并研究了与直接激光冷却相关的旋转振动光谱。 BaH是激光冷却和超冷破碎的有前途的候选者,两者都是多体物理和精密测量领域新实验的先驱。我们对烧蚀羽流的特性进行了详细分析,可以增进对表面烧蚀和沉积技术的了解。已经研究了一系列吸收光谱和碰撞热化机制。我们直接测量了B-2 Sigma(+)(v'= 0)<-X-2 Sigma(+)(v''= 1)循环过渡的弗兰克-康登因子。概述了高亮度低温BaH光束的生产前景。

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