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◆ Science advances2026-09-04

Direct observation of quantum scattering oscillations in the controlled Kr* + Rb cold collision.

Yu-Chan Wang, Rui-Fan Wu, Hao Li, Zhao-Cong Shi, Guo-Min Yang, Ya-Fu Guan, Bin Zhao, Wei Jiang

原始摘要(英文原文)· Original abstract
Quantum interference in cold collisions has been predicted to dominate chemical dynamics at low temperatures. However, experimental observations have been largely confined to light-atom systems due to technical challenges. Here, we report direct observation of scattering oscillations in cold ionizing collisions between metastable krypton and rubidium atoms. By combining laser cooling with velocity-mapped ion imaging, we precisely controlled the collision energy from 15 millikelvin to 8 kelvin and detected the ionization products. Below 1 kelvin, pronounced quantum interference between partial waves emerges as the de Broglie wavelength approaches the interaction range. The angular oscillation period scales as [Formula: see text], consistent with a Langevin capture model for van der Waals-dominated collisions. Moreover, interference patterns in the angular distribution-collision temperature spectrum are highly sensitive to the long-range potential shape and reveal subtle shape resonances. These observations were corroborated by theoretical calculations. Our results demonstrate the quantum-classical crossover in heavy-atom systems. This study establishes a versatile platform for studying a wide range of laser-coolable species.
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Direct observation of quantum scattering oscillations in the controlled Kr* + Rb cold collision. — 科研速览 Science Skim