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Penning ionization of doped helium nanodroplets following EUV excitation

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arxiv 1302.1996 v1 pith:32CDL5CY submitted 2013-02-08 physics.atm-clus

Penning ionization of doped helium nanodroplets following EUV excitation

classification physics.atm-clus
keywords alkalidropletsexcitationpenningdopantsdopeddropletgases
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Helium nanodroplets are widely used as a cold, weakly interacting matrix for spectroscopy of embedded species. In this work we excite or ionize doped He droplets using synchrotron radiation and study the effect onto the dopant atoms depending on their location inside the droplets (rare gases) or outside at the droplet surface (alkali metals). Using photoelectron-photoion coincidence imaging spectroscopy at variable photon energies (20-25 eV), we compare the rates of charge-transfer to Penning ionization of the dopants in the two cases. The surprising finding is that alkali metals, in contrast to the rare gases, are efficiently Penning ionized upon excitation of the (n=2)-bands of the host droplets. This indicates rapid migration of the excitation to the droplet surface, followed by relaxation, and eventually energy transfer to the alkali dopants.

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