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Communication: Direct angle-resolved measurements of collision dynamics with electronically excited molecules: NO(A2Σ+)+ Ar

机译:通讯:与电子激发分子的碰撞动力学的直接角分辨测量:NO(A2Σ+)+ Ar

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摘要

We report direct doubly differential (quantum state and angle-resolved) scattering measurements involving short-lived electronically excited molecules using crossed molecular beams. In our experiment, supersonic beams of nitric oxide and argon atoms collide at 90. In the crossing region, NO molecules are excited to the A~2Σ+state by a pulsed nanosecond laser, undergo rotationally inelastic collisions with Ar atoms, and are then detected 400 ns later (approximately twice the radiative lifetime of the A ~2Σ+state) by 1 1′ multiphoton ionization via the E~2Σ+ state. The velocity distributions of the scattered molecules are recorded using velocity-mapped ion imaging. The resulting images provide a direct measurement of the state-to-state differential scattering cross sections. These results demonstrate that sufficient scattering events occur during the short lifetimes typical of molecular excited states (~200 ns, in this case) to allow spectroscopically detected quantum-state-resolved measurements of products of excited-state collisions.
机译:我们报告直接双微分(量子态和角度分辨)散射测量,涉及使用交叉分子束的短寿命电子激发分子。在我们的实验中,一氧化氮和氩原子的超声波束在90°处碰撞。在交叉区域,NO分子被脉冲纳秒激光激发到A〜2Σ+状态,与Ar原子发生旋转非弹性碰撞,然后被检测到400 ns后(通过E〜2Σ+状态进行1 1'多光子电离),大约是A〜2Σ+状态的辐射寿命的两倍。使用速度映射的离子成像记录散射分子的速度分布。所得图像可直接测量状态到状态的差分散射截面。这些结果表明,在分子激发态的典型短寿命(在这种情况下约为200 ns)的短寿命内会发生足够的散射事件,从而可以用光谱法检测激发态碰撞产物的量子态分辨测量。

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