Lam Huynh Van Sa, Venkatachalam Anbu Selvam, Bhattacharyya Surjendu, Chen Keyu, Borne Kurtis, Wang Enliang, Boll Rebecca, Jahnke Till, Kumarappan Vinod, Rudenko Artem, Rolles Daniel
James R. Macdonald Laboratory, Kansas State University, Manhattan, Kansas 66506, USA.
European XFEL, 22869 Schenefeld, Germany.
Phys Rev Lett. 2024 Mar 22;132(12):123201. doi: 10.1103/PhysRevLett.132.123201.
Coulomb explosion imaging (CEI) with x-ray free electron lasers has recently been shown to be a powerful method for obtaining detailed structural information of gas-phase planar ring molecules [R. Boll et al., X-ray multiphoton-induced Coulomb explosion images complex single molecules, Nat. Phys. 18, 423 (2022).NPAHAX1745-247310.1038/s41567-022-01507-0]. In this Letter, we investigate the potential of CEI driven by a tabletop laser and extend this approach to differentiating three-dimensional structures. We study the static CEI patterns of planar and nonplanar organic molecules that resemble the structures of typical products formed in ring-opening reactions. Our results reveal that each molecule exhibits a well-localized and distinctive pattern in three-dimensional fragment-ion momentum space. We find that these patterns yield direct information about the molecular structures and can be qualitatively reproduced using a classical Coulomb explosion simulation. Our findings suggest that laser-induced CEI can serve as a robust method for differentiating molecular structures of organic ring and chain molecules. As such, it holds great promise as a method for following ultrafast structural changes, e.g., during ring-opening reactions, by tracking the motion of individual atoms in pump-probe experiments.
最近,利用X射线自由电子激光进行的库仑爆炸成像(CEI)已被证明是一种获取气相平面环状分子详细结构信息的强大方法[R. Boll等人,《X射线多光子诱导的库仑爆炸成像复杂单分子》,《自然·物理学》18,423(2022年)。NPAHAX1745 - 247310.1038/s41567 - 022 - 01507 - 0]。在本信函中,我们研究了由桌面激光器驱动的CEI的潜力,并将此方法扩展到区分三维结构。我们研究了类似于开环反应中形成的典型产物结构的平面和非平面有机分子的静态CEI图案。我们的结果表明,每个分子在三维碎片离子动量空间中都呈现出一个定位良好且独特的图案。我们发现这些图案能产生有关分子结构的直接信息,并且可以使用经典的库仑爆炸模拟进行定性再现。我们的研究结果表明,激光诱导的CEI可作为一种区分有机环状和链状分子结构的可靠方法。因此,通过在泵浦 - 探测实验中跟踪单个原子的运动,它作为一种跟踪超快结构变化(例如在开环反应期间)的方法具有很大的前景。