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Adimensional theory of shielding in ultracold collisions of dipolar rotors

机译:二极管转子超薄碰撞中屏蔽贴叠理论

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We investigate the electric field shielding of ultracold collisions of dipolar rotors, initially in their first rotational excited state, using an adimensional approach. We establish a map of good and bad candidates for efficient evaporative cooling based on this shielding mechanism, by presenting the ratio of elastic over quenching processes as a function of a rescaled rotational constant B = B/s_(E3) and a rescaled electric field F = dF/B. B,d,F, and s_(E3) are respectively the rotational constant, the full electric dipole moment of the molecules, the applied electric field, and a characteristic dipole-dipole energy.We identify two groups of bi-alkali-metal dipolar molecules. The first group, including RbCs, NaK, KCs, LiK, NaRb, LiRb, NaCs, and LiCs, is favorable with a ratio over 1000 at collision energies equal to (or even higher than) their characteristic dipolar energy. The second group, including LiNa and KRb, is not favorable. More generally, for molecules well described by Hund’s case b, our adimensional study provides the conditions of efficient evaporative cooling. The range of appropriate rescaled rotational constant and rescaled field is approximately B ≥ 10~8 and 3.25 ≤ F ≤ 3.8, with a maximum ratio reached for F ~ 3.4 for a given B.We also discuss the importance of the electronic van derWaals interaction on the adimensional character of our study.
机译:我们使用累积方法调查偶极转子较常旋转状态的超级碰撞的电场屏蔽。我们建立了基于该屏蔽机构的高效蒸发冷却的良好和坏候选的地图,通过呈现弹性过淬火过程的比率作为重新旋转常数B = B / S_(E3)和重叠的电场F的函数= df / b。 B,D,F和S_(E3)分别是旋转常数,分子的全电偶极力矩,施加的电场和特征偶极偶极能量.We鉴定两组双碱金属偶极物分子。第一个组,包括RBCS,Nak,KCS,LIK,NARB,LiRB,NAC和LICS,碰撞能量超过1000的比率等于其特征偶极能量。第二组,包括LINA和KRB,不利。更一般地,对于由Hund的情况B描述的分子,我们的既复审计研究提供了有效的蒸发冷却条件。适当的重新分配旋转恒定和重选磁场的范围大约是B≥10〜8和3.25≤f≤3.8,对于给定的B.WE也达到了F〜3.4的最大比率。我们还讨论了电子范德文人的重要性我们研究的妄想性质。

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