| Literature DB >> 25290160 |
Rebecca Boll1, Arnaud Rouzée, Marcus Adolph, Denis Anielski, Andrew Aquila, Sadia Bari, Cédric Bomme, Christoph Bostedt, John D Bozek, Henry N Chapman, Lauge Christensen, Ryan Coffee, Niccola Coppola, Sankar De, Piero Decleva, Sascha W Epp, Benjamin Erk, Frank Filsinger, Lutz Foucar, Tais Gorkhover, Lars Gumprecht, André Hömke, Lotte Holmegaard, Per Johnsson, Jens S Kienitz, Thomas Kierspel, Faton Krasniqi, Kai-Uwe Kühnel, Jochen Maurer, Marc Messerschmidt, Robert Moshammer, Nele L M Müller, Benedikt Rudek, Evgeny Savelyev, Ilme Schlichting, Carlo Schmidt, Frank Scholz, Sebastian Schorb, Joachim Schulz, Jörn Seltmann, Mauro Stener, Stephan Stern, Simone Techert, Jan Thøgersen, Sebastian Trippel, Jens Viefhaus, Marc Vrakking, Henrik Stapelfeldt, Jochen Küpper, Joachim Ullrich, Artem Rudenko, Daniel Rolles.
Abstract
This paper gives an account of our progress towards performing femtosecond time-resolved photoelectron diffraction on gas-phase molecules in a pump-probe setup combining optical lasers and an X-ray free-electron laser. We present results of two experiments aimed at measuring photoelectron angular distributions of laser-aligned 1-ethynyl-4-fluorobenzene (C(8)H(5)F) and dissociating, laser-aligned 1,4-dibromobenzene (C(6)H(4)Br(2)) molecules and discuss them in the larger context of photoelectron diffraction on gas-phase molecules. We also show how the strong nanosecond laser pulse used for adiabatically laser-aligning the molecules influences the measured electron and ion spectra and angular distributions, and discuss how this may affect the outcome of future time-resolved photoelectron diffraction experiments.Entities:
Year: 2014 PMID: 25290160 DOI: 10.1039/c4fd00037d
Source DB: PubMed Journal: Faraday Discuss ISSN: 1359-6640 Impact factor: 4.008