Chatterley Adam S, Shepperson Benjamin, Stapelfeldt Henrik
Department of Chemistry, Aarhus University, Langelandsgade 140, DK-8000 Aarhus C, Denmark.
Phys Rev Lett. 2017 Aug 18;119(7):073202. doi: 10.1103/PhysRevLett.119.073202. Epub 2017 Aug 14.
We demonstrate 3D spatial alignment of 3,5-dichloroiodobenzene molecules embedded in helium nanodroplets using nonresonant elliptically polarized 160 ps laser pulses at a 1 kHz repetition rate. Through Coulomb explosion imaging and ion-ion covariance mapping, the 3D alignment is characterized and found to be stronger than that of isolated molecules. The 3D alignment follows the intensity profile of the alignment laser pulse almost adiabatically, except for a delayed response in the helium droplets, which could be exploited for field-free 3D alignment. Our results pave the way for next-generation molecular dynamics and diffraction experiments, performed within a cold helium solvent.
我们使用重复频率为1kHz的非共振椭圆偏振160 ps激光脉冲,展示了嵌入氦纳米液滴中的3,5-二氯碘苯分子的三维空间排列。通过库仑爆炸成像和离子-离子协方差映射,对三维排列进行了表征,发现其比孤立分子的排列更强。除了氦液滴中的延迟响应外,三维排列几乎绝热地遵循排列激光脉冲的强度分布,这可用于无场三维排列。我们的结果为在冷氦溶剂中进行的下一代分子动力学和衍射实验铺平了道路。