Thiophene is a prototype for the excited state photophysics that lies at the heart of many technologies within the field of organic electronics.
The rovibrational energy-level structures of BaH+ and BaD+ in their X+ 1Σ+ electronic ground state have been characterised by pulsed-field-ionisation zero-kinetic-energy photoelectron spectroscopy.
The ionic photofragmentation cross sections for the HS+, HCl+ and H2S+ molecular hydride ions are presented in the region of the 2p threshold.
The photoionisation of the rare-gas atoms Rg = Ar, Kr and Xe is investigated at the Rg+ […](ns)2(np)5 2P3/2 ← Rg[…](ns)2(np)5((n + 1)s)13P2 photoionisation threshold (n = 3, 4 and 5 for Ar, Kr and Xe) using pulsed-ramped-field-ionisation zero-kinetic-energy (PRFI-ZEKE) photoelectron spectroscopy.
We study the isomer-specific photoionisation and photofragmentation of 1,2-dibromoethene (DBE) under strong-field fs-laser irradiation in the gas phase complementing previous studies utilising ns- and ps-laser excitation.