Mizuse Kenta, Fujimoto Romu, Mizutani Nobuo, Ohshima Yasuhiro
Department of Chemistry, Tokyo Institute of Technology;
Department of Chemistry, Tokyo Institute of Technology.
J Vis Exp. 2017 Feb 4(120):54917. doi: 10.3791/54917.
We present a method for visualizing laser-induced, ultrafast molecular rotational wave packet dynamics. We have developed a new 2-dimensional Coulomb explosion imaging setup in which a hitherto-impractical camera angle is realized. In our imaging technique, diatomic molecules are irradiated with a circularly polarized strong laser pulse. The ejected atomic ions are accelerated perpendicularly to the laser propagation. The ions lying in the laser polarization plane are selected through the use of a mechanical slit and imaged with a high-throughput, 2-dimensional detector installed parallel to the polarization plane. Because a circularly polarized (isotropic) Coulomb exploding pulse is used, the observed angular distribution of the ejected ions directly corresponds to the squared rotational wave function at the time of the pulse irradiation. To create a real-time movie of molecular rotation, the present imaging technique is combined with a femtosecond pump-probe optical setup in which the pump pulses create unidirectionally rotating molecular ensembles. Due to the high image throughput of our detection system, the pump-probe experimental condition can be easily optimized by monitoring a real-time snapshot. As a result, the quality of the observed movie is sufficiently high for visualizing the detailed wave nature of motion. We also note that the present technique can be implemented in existing standard ion imaging setups, offering a new camera angle or viewpoint for the molecular systems without the need for extensive modification.
我们提出了一种可视化激光诱导的超快分子旋转波包动力学的方法。我们开发了一种新的二维库仑爆炸成像装置,实现了一个迄今为止不实用的相机角度。在我们的成像技术中,用圆偏振强激光脉冲照射双原子分子。喷射出的原子离子被加速到垂直于激光传播方向。通过使用机械狭缝选择位于激光偏振平面内的离子,并用平行于偏振平面安装的高通量二维探测器成像。由于使用了圆偏振(各向同性)库仑爆炸脉冲,观察到的喷射离子的角分布直接对应于脉冲照射时的旋转波函数平方。为了创建分子旋转的实时电影,将本成像技术与飞秒泵浦 - 探测光学装置相结合,其中泵浦脉冲产生单向旋转的分子系综。由于我们检测系统的高图像通量,可以通过监测实时快照轻松优化泵浦 - 探测实验条件。结果,观察到的电影质量足够高,足以可视化运动的详细波动性质。我们还注意到,本技术可以在现有的标准离子成像装置中实现,为分子系统提供新的相机角度或视角,而无需进行大量修改。