Advances in X-Ray Analysis: Volume 38 by Robert L. Snyder, Bin-Jiang Chen (auth.), Paul K.

By Robert L. Snyder, Bin-Jiang Chen (auth.), Paul K. Predecki, D. Keith Bowen, John V. Gilfrich, Charles C. Goldsmith, Ting C. Huang, Ron Jenkins, I. Cev Noyan, Deane K. Smith (eds.)

Exact Modeling of dimension and pressure Broadening within the Rietveld Refinement: The 'DoubleVoigt' technique (D. Balzar). In vivo Xray Fluorescence of Lead and different poisonous hint parts (D.R. Chettle). Xray Diffraction research of PM10 Aerosols Extracted through Ultrasound (B.L. Davis, H. Chen). overall Electron Yield (TEY): a brand new strategy for Quantitative Xray research (H. Ebel). Manufacture and Use of establishing Samples (F.R. Feret). utilized Crystallography within the Scanning Electron Microscope utilizing a CCD Detector (R.P. Goehner, J.R. Michael). hint research through TXRF (R.S. Hockett). An in situ XRD strategy for Annealing Investigations (D.E. Hoylman, S.C. Axtell). edition of the EGS4 Monte Carlo Code for the layout of a Polarized resource for Xray Fluorescence research of Platinum and different Heavy Metals in vivo (D.G. Lewis). 3D Graphing of XRF Matrix Correction Equations (A.J. Klimasara). Environmental components Contributing to the physique Burden of Lead as made up our minds by way of in vivo Xray Fluorescence (S.J.S. Ryde). research of Residual Stresses in a Sleeve Coldworked Lug Specimen by way of Neutron and Xray Diffraction (R. Lin). Picosecond Xray Diffraction: process and functions (P.M. Rentzepis). The Characterization of Microtexture via Orientation Mapping (R.A. Schwarzer). seventy nine extra articles. Index.

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D. Taylor. Rutherford Appleton Laboratory Report, RAL-87-056 (1987). R Moreh. Nuc!. Instrum. Meth. 166 45 (1979). M. H. C. E. Kroeze and D. Leggett. Proceedings of the Gas Turbine and Aeroengine Congress, Brussels, Belgium, June 11-14, 1990. ASME 90-GT-324. H. M. C. Tennant and D. Leggett. F. Schooley, editor) AlP, pp. 1231 (1992). D. M. H. C. Tennant. Proceedings of the 37th Annual Symposium of the Instrument Society of America, San Diego, USA, 1991. IASA, #91-090. E. Bacon. Neutron Diffraction.

One of the basic advantages of x-ray diffraction is that to a large extent x-rays interact weakly with matter and therefore provide an ideal, non-destructive, probe for structural studies of bulk as well of surfaces. Time resolved studies of ultrafast phenomena have been accomplished by several techniques. Most of the time resolution studies in the subnanosecond range have been achieved by optical probing involving the use of ultrashort laser pulses. Lasers in conjunction with synchrotrons are the most often used techniques for the generation of subnanosecond x-ray pulses.

The streak camera was triggered by the optical pulse and was operated at 300 Hz. The x-ray output and sensitivity of the photocathode were insufficient for single shot measurement and frame accumulation of several shots was necessary to obtain reliable pulse width measurements. By comparison of the accumulated x-ray and UV signals and knowing the duration of the UV pulse (9 ps), we have determined an upper limit for the x-ray pulse duration of about 50 ps. A lower limit being the theoretical estimate of 20 ps [16].

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