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Doping He droplets by laser ablation with a pulsed supersonic jet source
R Katzy1, M Singer1, S Izadnia1
1Physikalisches Institut, Universität Freiburg, 79104 Freiburg, Germany.
The Review of Scientific Instruments
|February 1, 2016
Summary
This study introduces a new laser ablation setup for doping helium nanodroplets. This method efficiently introduces isolated atoms and molecules for high-resolution spectroscopy, offering a valuable tool for gas-phase analysis.
Area of Science:
- Atomic and Molecular Physics
- Spectroscopy
- Nanoscale Science
Background:
- Laser ablation is a technique for generating atomic and molecular species in the gas phase.
- Helium nanodroplets provide a cold, weakly perturbed environment for studying isolated species.
- Existing doping methods for helium nanodroplets have limitations.
Purpose of the Study:
- To present a novel setup for doping pulsed helium nanodroplet beams using laser ablation.
- To investigate the influence of experimental parameters on doping efficiency.
- To compare laser ablation doping with conventional oven cell doping.
Main Methods:
- Development and implementation of a new laser ablation doping setup for pulsed helium nanodroplet beams.
- Characterization of doping processes using a surface ionization detector.
- Spectroscopic analysis of ablated materials via laser-induced fluorescence.
Main Results:
- Demonstrated efficient doping of helium nanodroplets using pulsed laser ablation.
- Identified key experimental parameters affecting doping efficiency, such as plume overlap with droplet formation.
- Observed comparable doping efficiency to conventional oven cell methods under similar helium stagnation conditions.
Conclusions:
- The new laser ablation setup is effective for doping helium nanodroplets.
- Optimizing the overlap between the ablation plume and droplet formation enhances doping.
- This technique provides a viable alternative for preparing cold, isolated species for spectroscopic studies.

