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Controlled molecule injector for cold, dense, and pure molecular beams at the European x-ray free-electron laser

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arxiv 2405.06344 v1 pith:MJZF4PL3 submitted 2024-05-10 physics.chem-ph physics.atm-clus

classification physics.chem-phphysics.atm-clus
keywords comoeuxfellasermolecularsetupx-rayclusterscold
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A permanently available molecular-beam injection setup for controlled molecules (COMO) was installed and commissioned at the small quantum systems (SQS) instrument at the European x-ray free-electron laser (EuXFEL). A $b$-type electrostatic deflector allows for pure state-, size-, and isomer-selected samples of polar molecules and clusters. The source provides a rotationally cold ($T\approx1$~K) and dense ($\rho\approx10^8$~cm$^{-3}$) molecular beam with pulse durations up to 100~\us generated by a new version of the Even-Lavie valve. Here, a performance overview of the COMO setup is presented along with characterization experiments performed both, with an optical laser at the Center for Free-Electron-Laser Science and with x-rays at EuXFEL under burst-mode operation. COMO was designed to be attached to different instruments at the EuXFEL, in particular at the small quantum systems (SQS) and single particles, clusters, and biomolecules (SPB) instruments. This advanced controlled-molecules injection setup enables XFEL studies using highly defined samples with soft and hard x-ray FEL radiation for applications ranging from atomic, molecular, and cluster physics to elementary processes in chemistry and biology.

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  1. Rotational-state-controlled dissociative ionization dynamics in $\mathrm{CF_2I_2}$

    physics.chem-ph 2026-08 conditional novelty 6.0 of 10

    The initial rotational state of CF2I2 molecules, selected by electrostatic deflection, strongly changes the branching of strong-field dissociative ionization products.

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