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首页> 外文期刊>Nature Chemistry >State-resolved diffraction oscillations imaged for inelastic collisions of NO radicals with He, Ne and Ar
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State-resolved diffraction oscillations imaged for inelastic collisions of NO radicals with He, Ne and Ar

机译:NO原子与He,Ne和Ar发生非弹性碰撞而成像的状态分辨衍射振荡

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摘要

Just as light scattering from an object results in diffraction patterns, the quantum mechanical nature of molecules can lead to the diffraction of matter waves during molecular collisions. This behaviour manifests itself as rapid oscillatory structures in measured differential cross-sections, and such observable features are sensitive probes of molecular interaction potentials. However, these structures have proved challenging to resolve experimentally. Here, we use a Stark decelerator to form a beam of state-selected and velocity-controlled NO radicals and measure state-to-state differential cross-sections for inelastic collisions of NO with He, Ne and Ar atoms using velocity map imaging. The monochromatic velocity distribution of the NO beam produced scattering images with unprecedented sharpness and angular resolution, thereby fully resolving quantum diffraction oscillations. We found excellent agreement with quantum close-coupling scattering calculations for these benchmark systems.
机译:正如来自物体的光散射会导致衍射图一样,分子的量子力学性质也会导致分子碰撞过程中物质波的衍射。这种行为表现为在测量的不同横截面中的快速振荡结构,并且这种可观察的特征是分子相互作用电位的敏感探针。但是,这些结构已证明很难通过实验解析。在这里,我们使用Stark减速器形成一束状态选择且受速度控制的NO自由基,并使用速度图成像技术测量NO与He,Ne和Ar原子发生非弹性碰撞的状态间差异截面。 NO光束的单色速度分布产生具有前所未有的清晰度和角分辨率的散射图像,从而完全解决了量子衍射振荡。对于这些基准系统,我们发现与量子紧密耦合散射计算极为吻合。

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