Alkali-metal atoms captured on the surface of superfluid helium droplets are excited to high energies (approximate to 3 eV) by means of pulsed lasers, and their laser-induced-fluorescence spectra are recorded. We report on the one-photon excitation of the (n+1) p <- ns transition of K, Rb, and Cs (n=4, 5, and 6, respectively) and on the two-photon one-color excitation of the 5d <- 5s transition of Rb. Gated-photon-counting measurements are consistent with the relaxation rates of the bare atoms, hence consistent with the reasonable expectation that atoms quickly desorb from the droplet and droplet-induced relaxation need not be invoked.

One- and two-photon spectroscopy of highly excited states of alkali-metal atoms on helium nanodroplets

2010

Abstract

Alkali-metal atoms captured on the surface of superfluid helium droplets are excited to high energies (approximate to 3 eV) by means of pulsed lasers, and their laser-induced-fluorescence spectra are recorded. We report on the one-photon excitation of the (n+1) p <- ns transition of K, Rb, and Cs (n=4, 5, and 6, respectively) and on the two-photon one-color excitation of the 5d <- 5s transition of Rb. Gated-photon-counting measurements are consistent with the relaxation rates of the bare atoms, hence consistent with the reasonable expectation that atoms quickly desorb from the droplet and droplet-induced relaxation need not be invoked.
2010
Istituto Officina dei Materiali - IOM -
EXCIPLEX FORMATION; LIQUID-HELIUM; ABSORPTION-SPECTRA; RYDBERG STATES; CLUSTERS; SURFACE; NA; RELAXATION; DROPLETS; ELECTRON
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/35921
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