67 research outputs found
Vacuum-ultraviolet photoabsorption imaging system for laser plasma plume diagnostics
We describe a recently designed and constructed system based on a 1 m normal incidence vacuum monochromator with corrected (toroidal) optics that produces a wavelength tuneable and collimated vacuum-ultraviolet (VUV) (λ=30â100 nm) beam. The VUV continuum source is a laser-generated gold plasma. The primary function of the system is the measurement of time resolved âimagesâ or spatial distributions of photoabsorption/photoionization in expanding laser plasma plumes. This is achieved by passing the beam through the sample of interest (in our case a second synchronised plasma) and recording the âfootprintâ of the attenuated beam on a charge coupled device. Using this VUV photoabsorption imaging or âshadowgraphyâ technique we track and extract column density distributions in expanding plasma plumes. We can also measure the plume front velocity. We have characterized the system, particularly in relation to spectral and spatial resolution and the experimental results meet very well the expectations from ray tracing done at the design phase. We present first photoabsorption images and column density distributions of laser produced Ca plumes from the system
Photoabsorption and photoion spectroscopy of atomic uranium in the region of 6p and 5d excitations
The photoabsorption process in atomic uranium has been investigated experimentally and theoretically in the 15â150-eV region. Using the dual laser plasma technique, the 6p photoabsorption spectrum has been recorded while for the first time the 5d region has been remeasured photoelectrically using both photoabsorption and photoion spectroscopy. Interpretation of the photoabsorption spectra is supported by Hartree-Fock calculations which take into account spin-flip decay and the interaction of many discrete states with many continua. The 6p spectrum is entirely dominated by spin-orbit split 6pâ6d transitions. The 5d-subshell photoabsorption is shown to consist predominantly of discrete 5dâ5f excitations; here the electrostatic and spin-orbit interactions are comparable in strength
Trends in autoionization of Rydberg states converging to the 4s threshold in the Kr-Rbâș-SrÂČâș isoelectonic sequence: theory and experiment
We have measured the photoabsorption spectra of the Kr-like ions Rb+ and Sr2+ at photon energies corresponding to the excitation of 4s-np resonances using, the dual laser plasma photoabsorption technique. Dramatic changes in the line profiles, with increasing ionization and also proceeding along the Rydberg series of each ion, are observed and explained by the trends in 4s-transition amplitudes computed within a framework of configuration-interaction Pauli-Fock calculations. Total photoionization cross sections show very good agreement with relative absorption data extracted from the measured spectra
Table-top ultrasoft X-ray continuum light source
SIGLEAvailable from British Library Document Supply Centre-DSC:8715.1804(CLRC-RAL-TR--96-081) / BLDSC - British Library Document Supply CentreGBUnited Kingdo
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