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Ultrafast dynamics in the excited hydrogen atom transfer states of ammonia clusters
Authors:P Farmanara  H-H Ritze  V Stert  W Radloff  IV Hertel
Institution:1.Max-Born-Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Max-Born-Str. 2A, 12489 Berlin-Adlershof, Germany,DE
Abstract:Neutral ammonia clusters (NH3)m are photo-excited to the electronic state by a deep UV femtosecond laser pump pulse. Within a few hundred femtoseconds a significant fraction of the clusters rearrange to form an H-transfer state (NH3)m-2NH4(3s)NH2 with the subunit NH4 in its 3s electronic ground state. This state is then electronically excited by a time-delayed infrared control pulse of variable wavelength. Finally, a third (probe) pulse in the UV ionizes the clusters for detection. The lifetime of the excited (NH3)m-2NH4(3p)NH2 states is found to vary between 2.7 and 0.13 ps depending on cluster size and excitation energy. It increases drastically upon deuteration. The corresponding cluster size-dependent photoelectron spectra allow us to disentangle the underlying energetics of the excitation and ionization process and reveal additional processes, such as nonresonant ionization or dissociative ionization. The experimental findings suggest that the excited H-transfer ammonia complexes with m > 2 are deactivated by an internal conversion process back to the electronically lowest H-transfer state followed by fast dissociation. Received 22 September 2001 and Received in final form 31 January 2002
Keywords:PACS  36  40  Mr Spectroscopy and geometrical structure of clusters –  36  40  Sx Diffusion aaand dynamics of clusters –  42  65  Re          Ultrafast processes  optical pulse generation and pulse compression –  33  60  -q Photoelectron spectra –  82  30  Nr Association            addition  insertion  cluster formation
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