Since starting the project on 1 June 2023, we have focused on planning and building the novel experimental setup that will serve as a 3D-light/3D-detection platform.
To design the novel type of 3D-light/3D-detection platform, we worked on the details of the main components of our setup, which are the vacuum chamber and the optical setup. Next, we prepared technical drawings for the entire vacuum chamber that hosts a tailored supersonic jet system, the electron and ion spectrometer, as well as coincident multi-particle detectors with time- and position resolution. While ordering the parts for the vacuum chamber, we started the design of the optical setup, bought a new laser system, and performed first commissioning experiments.
In order to bridge the natural gap in output that arises from building the new experimental setup, we conducted a classical two-step (CTS) simulation with initial conditions at the tunnel exit from a simulation based on strong-field approximation (SFA). The simulation showed impressive results and has been submitted for publication (arXiv:2504.08573). It is found that it is possible to produce chiral electron momentum distributions using realistic experimental conditions.