arXiv · 1508.04018
Steering proton migration in hydrocarbons using intense few-cycle laser fields
Abstract
Proton migration is a ubiquitous process in chemical reactions related to biology, combustion, and catalysis. Thus, the ability to control the movement of nuclei with tailored light, within a hydrocarbon molecule holds promise for far-reaching applications. Here, we demonstrate the steering of hydrogen migration in simple hydrocarbons, namely acetylene and allene, using waveform-controlled, few-cycle laser pulses. The rearrangement dynamics are monitored using coincident 3D momentum imaging spectroscopy, and described with a quantum-dynamical model. Our observations reveal that the underlying control mechanism is due to the manipulation of the phases in a vibrational wavepacket by the intense off-resonant laser field.
Explore related subjects
Keep this discovery
M. Kübel, R. Siemering, C. Burger, Nora G. Kling, H. Li, A. S. Alnaser, B. Bergues, S. Zherebtsov, A. M. Azzeer, I. Ben-Itzhak, R. Moshammer, R. de Vivie-Riedle, M. F. Kling. 2015-08-17. Steering proton migration in hydrocarbons using intense few-cycle laser fields. https://doi.org/10.1103/physrevlett.116.193001
Cite the original work for its findings. Save a collection to share your selection of sources.