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Dipolar Collisions of Ultracold Ground-State Bosonic Molecules

机译:Ultracold地面旋转分子的偶极碰撞

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The dipolar collision between ultracold polar molecules is an important topic both by its own right from the fundamental point of view and for the successful exploration of many-body physics with strong and long-range dipolar interactions. Here, we report the investigation of collisions between ultracold ground-state sodium-rubidium molecules in electric fields with induced electric dipole moments as large as 0.7?D. We observe a stepwise enhancement of losses due to the coupling between different partial waves induced by the increasingly stronger anisotropic dipolar interactions. Varying the temperature of our sample, we find good agreement with theoretical loss rates assuming complex formation as the main loss process. Our results shed new light on the understanding of complex molecular collisions in the presence of strong dipolar interactions and also demonstrate the versatility of modifying molecular interactions with electric fields.
机译:超克拉隆极地分子之间的偶极碰撞是自身的重要课题,从根本的角度来看,具有强大和远程偶极互动的许多身体物理学的成功探索。在这里,我们报告了诱导电场诱导电场在电场中较大的电场碰撞的碰撞调查,该偶极矩阵为0.7Δd。由于通过越来越强大的各向异性偶极相互作用诱导的不同部分波之间的耦合,我们观察逐步提高损失。不同于我们样本的温度,我们发现假设复杂地层作为主要损失过程的理论损失率很好。我们的结果在强大的双极相互作用存在下对复杂的分子碰撞的理解揭示了新的光线,并表明了与电场改变分子相互作用的多功能性。

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