Dopant ionization and efficiency of ion and electron ejection from helium nanodroplets
arXiv:2305.19619 · doi:10.1063/5.0160171
Abstract
Photoionization spectroscopy and mass spectrometry of doped helium (He) nanodroplets rely on the ability to efficiently detect ions and/or electrons. Using a commercial quadrupole mass spectrometer and a photoelectron-photoion coincidence (PEPICO) spectrometer, we systematically measure yields of ions and electrons created in pure and doped He nanodroplets in a wide size range and in two ionization regimes -- direct ionization and secondary ionization after resonant photoexcitation of the droplets. For two different types of dopants (oxygen molecules, O, and lithium atoms, Li), we infer the optimal droplet size to maximize the yield of ejected ions. When dopants are ionized by charge-transfer to photoionized He nanodroplets, the highest yield of O and Li ions is detected for a mean size of He atoms per nanodroplet. When dopants are Penning ionized via photoexcitation of the He droplets, the highest yield of O and Li ions is detected for and He atoms per droplet, respectively. At optimum droplet sizes, the detection efficiency of dopant ions in proportion to the number of primary photoabsorption events is up to 20\,\% for charge-transfer ionization of O and 2\,\% for Li, whereas for Penning ionization it is 1\,\% for O and 4\,\% for Li. Our results are instrumental in determining optimal conditions for mass spectrometric studies and photoionization spectroscopy of molecules and complexes isolated in He nanodroplets.
References in corpus (9)
- Photoionizaton of Pure and Doped Helium Nanodroplets
- Highly charged droplets of superfluid helium
- Interatomic Coulombic decay in helium nanodroplets
- Inelastic scattering of photoelectrons from He nanodroplets
- Time-resolved Ultrafast Interatomic Coulombic Decay in Superexcited Sodium-doped Helium Nanodroplets
- Diffraction imaging of light induced dynamics in xenon-doped helium nanodroplets
- Relaxation dynamics in excited helium nanodroplets probed with high resolution, time-resolved photoelectron spectroscopy
- Efficient Indirect Interatomic Coulombic Decay Induced by Photoelectron Impact Excitation in Large He Nanodroplets
- Electron energy loss and angular asymmetry induced by elastic scattering in helium droplets