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C A Ramsdale

Publications and source records attributed to C A Ramsdale.

3 recordsLinked to original sources

Initial data from the 30-element ORTEC HPGe detector array and the XSPRESS pulse-processing electronics at the SRS, Daresbury Laboratory.

Following the completion of the collaborative project between CLRC Daresbury Laboratory and EG&G ORTEC to develop the world's first 30-element HPGe detector for fluorescence XAFS, it has now been tested and commissioned at the SRS. The system was commissioned with the XSPRESS digital pulse-processing electronics and this has demonstrated processed count rates in excess of 10 MHz. Initial data have been recorded and are presented.

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Quick Fluorescence-EXAFS: an Improved Method for Collection of Conventional XAFS Data, an Improved Method for Collection of Conventional XAFS Data and for Studying Reaction Intermediates in Dilute Systems.

The quick EXAFS (QuEXAFS) technique provides an alternative way of recording X-ray absorption fine-structure (XAFS) data where the scan time is reduced by moving the monochromator at a constant angular speed and recording the data ;on the fly'. Results are presented to show that the use of fluorescence detection with QuEXAFS is eminently suitable for studying reactions in dilute systems such as metalloproteins at a sub-minute time scale. In addition, we show that the fluorescence-QuEXAFS technique can reduce the overall time for normal data collection by some 50% compared with conventional step-by-step scanning EXAFS using the same optical system, thus reducing the total X-ray exposures of the samples. The use of X-rays for studying in situ redox reactions is demonstrated.

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Computing for synchrotron radiation experiments.

Computing provision is of major concern to synchrotron radiation researchers. An overview is presented of the computing facilities for synchrotron radiation work at the Synchrotron Radiation Source, Daresbury Laboratory. Data acquisition, reduction and analysis are seen as an integrated activity essential for full utilization of beam time. We discuss the evolution of data-acquisition systems from stand-alone systems of limited computing power, to a unified project computing village using state-of-the-art equipment for combined-technique, high-data-rate experiments. A brief account of software packages for data reduction and analysis is also given.

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