|
12:30 |
MO 1.1 |
Ar–CO als Prototyp für intermolekulare Wechselwirkungen — •Iris Scheele, Rudolf Lehnig und Martina Havenith
|
|
|
|
12:30 |
MO 1.2 |
Infrared spectroscopy of the molecular complexes H2O-N2O and D2O-N2O — •G. Gimmler und M. Havenith
|
|
|
|
12:30 |
MO 1.3 |
Infrared spectroscopy of formic acid in liquid He-droplets — •Frank Madeja, Roger Miller, and Martina Havenith-Newen
|
|
|
|
12:30 |
MO 1.4 |
Surface Dynamics of Alkali-doped Helium Nanodroplets Probed with Femtosecond Laser Pulses — •P. Claas, C.P. Schulz, and F. Stienkemeier
|
|
|
|
12:30 |
MO 1.5 |
The Formation of Heterogeneous van der Waals Complexes in Helium Droplets — •Nikolas Pörtner, Andrej F. Vilesov, and Martina Havenith
|
|
|
|
12:30 |
MO 1.6 |
Infrared spectra of H2O+-Rgn (n=1-14) complexes (Rg=He, Ne, Ar) — •Otto Dopfer and Doris Roth
|
|
|
|
12:30 |
MO 1.7 |
Dissociation of molecular cluster and dimer ions — •Rajendra Parajuli, Sara Matt, Aleksander Stamatoviv, Paul Scheier, and Tilmann Maerk
|
|
|
|
12:30 |
MO 1.8 |
Reactions of molecular ions and cluster ions with surfaces — •Christian Mair, Juraj Fedor, Matthias Lezius, Zdenek Herman, and Tilmann Märk
|
|
|
|
12:30 |
MO 1.9 |
High-resolution electron ionization study of molecules and clusters: appearance energies — •G. Hanel, T. Fiegele, M. Lezius, I. Torres, P. Tegeder, N. Mason, M. Farizon, B. Farizon, A. Stamatovic, P. Scheier, and T.D. Maerk
|
|
|
|
12:30 |
MO 1.10 |
A Molecular Beam Experiment for Studying Non-Linear Processes of Atoms and Clusters with VUV-FEL Radiation — •Hubertus Wabnitz, Klaus von Haeften, Peter Gürtler, Tim Laarmann, Wiebke Laasch, Anja Swiderski, and Thomas Möller
|
|
|
|
12:30 |
MO 1.11 |
Time-resolved studies of energy transfer from a vibrationally excited I2− chromophore into surrounding Ar or CO2 clusters — •Roland Wester, Alison V. Davis, Arthur E. Bragg, and Daniel M. Neumark
|
|
|
|
12:30 |
MO 1.12 |
Kinetics of water clusters collisions — •Anatoli Vostrikov and Sergei Drozdov
|
|
|
|
12:30 |
MO 1.13 |
Ionized neon clusters: a molecular dynamics approach for the study of the stable structures — •Francesco Sebastianelli, Francesco A. Gianturco, and Ersin Yurtsever
|
|
|
|
12:30 |
MO 1.14 |
Velocity dependence of ionization cross sections and dissociative branching ratios of C4+ clusters in C4+ → He collisions — •marin Chabot, romain fosse, daniel gardes, and karine wohrer
|
|
|
|
12:30 |
MO 1.15 |
Electronic Absorption Spectra of Small Silicon-Carbon Clusters in the Gas Phase — •Sergei Raikov and Victor Burakov
|
|
|
|
12:30 |
MO 1.16 |
Ionization Potentials and Structures of Small Indium Oxide Clusters — •Sven Neukermans, Ewald Janssens, Frederik Vanhoutte, Xin Wang, Erno Vandeweert, Roger E. Silverans, Peter Lievens, Christian Staudt, Andreas Wucher, Armando Navarro-Vazquez, and Paul von Rague Schleyer
|
|
|
|
12:30 |
MO 1.17 |
Caloric Curves and Phase Transitions of Sodium Clusters — •Jörn Donges, Thomas Hippler, Martin Schmidt, Bernd v. Issendorff, and Hellmut Haberland
|
|
|
|
12:30 |
MO 1.18 |
Feedback Optimal Control of Wavepacket Dynamics in Small Mixed Alkali Clusters — •Andreas Bartelt, Shinishirou Minemoto, Cosmin Lupulescu, Stefan Vajda, and Ludger Wöste
|
|
|
|
12:30 |
MO 1.19 |
Ionization of sodium clusters by strong femtosecond light pulses — •Larisa Kurkina
|
|
|
|
12:30 |
MO 1.20 |
Laser depletion during gold cluster anion reactions in an octopole ion trap — •Maryam Elijazyfer, Liana D. Socaciu, Jan Hagen, Ueli Heiz, Thorsten M. Bernhardt, and Ludger Wöste
|
|
|
|
12:30 |
MO 1.21 |
Evidence of temporary anion states of fullerene C20 from resonant low-energy electron scattering — •G. Kashenock, F.A. Gianturco, N. Sanna, and
|
|
|
|
12:30 |
MO 1.22 |
Delayed ionization as a probe for competing fragmentation processes — •Martin Hedèn, Frank Rohmund, Alexander Bulgakov, Raphael D. Levine, and Eleanor E. B. Campbell
|
|
|
|
12:30 |
MO 1.23 |
Electron-impact induced fragmentation of fullerene ions — •D. Hathiramani, P. Scheier, K. Aichele, W. Arnold, K. Huber, L.P. Presnyakov, D.B. Uskov, and E. Salzborn
|
|
|
|
12:30 |
MO 1.24 |
Kinetics of formation and relaxation of hot C60+* — •Anatoli Vostrikov, Dmitri Dubov, and Alexei Agarkov
|
|
|
|
12:30 |
MO 1.25 |
Alkali endohedral fullerenes — •Andreas Lassesson, Andrej Glotov, and Eleanor E. B. Campbell
|
|
|
|
12:30 |
MO 1.26 |
Purification and derivatisation of carbon nanotubes — •Sveningsson Martin, Frank Rohmund, Andrej Gromov, Raluca Morjan, Yoshinori Sato, and Eleanor E.B. Campbell
|
|
|
|
12:30 |
MO 1.27 |
Synthesis and characterization of carbon nanotubes obtained by chemical vapor deposition — •Raluca E. Morjan, Frank Rohmund, Martin Sveningsson, Yoshinori Sato, and Eleanor E.B. Campbell
|
|
|
|
12:30 |
MO 1.28 |
Particle-in-cell simulations of laser interaction with nanoplasmas produced from clusters — •Andrea Macchi, Hartmut Ruhl, and Fulvio Cornolti
|
|
|
|
12:30 |
MO 1.29 |
SANS study of the structure of DPPC/NaDC aggregates as a function of lipid/detergent ratio — •Martin Janich, Mikael Kiselev, and Annegret Hildebrand
|
|
|
|
12:30 |
MO 1.30 |
Zeitaufgelöste Beobachtung der Agglomeration von ZrO2-Partikeln — •Claudia Bitea und Clemens Walther
|
|
|
|
12:30 |
MO 1.31 |
Single-wall carbon nanotube diameter distributions calculated from experimental parameters — •Adalbert Ding, Christian Lenski, and Henning Kanzow
|
|
|
|
12:30 |
MO 1.32 |
Structure and Reactivity of Laser Generated Carbon Clusters — •Christian Lenski and Adalbert Ding
|
|
|
|
12:30 |
MO 1.33 |
Formation of Carbon Nanostructures by Pyrolysis of Fullerene Blacks Covered with thin Metal Films — •H. Kanzow, A. Ding, J. Nissen, H. Sauer, T. Belz, and R. Schlögl
|
|
|