This article describes the status of the STARGazer data-processing software and its data-processing algorithms. STARGazer and its manual, containing installation and data-processing components, have been prepared and provided to iBIX users. SingleCrystal lets you simulate X-ray, neutron and electron diffraction patterns from single crystals, display reciprocal lattice sections and construct stereographic projections of planes or vectors. Diffraction patterns (including background pictures and measurements) can be printed at high resolution. SingleCrystal Software is the easiest way to visualize and understand diffraction properties of crystals. You can also export diffraction data listings and 'Zone Axes' files - useful for indexing observed patterns. For example, a profile-fitting method for peak integration was developed and the data statistics were improved. SingleCrystal lets you save your work in a self-contained document, ready for instant display next time you use the program. STARGazer has been developed to make it easier to use and to obtain more accurate intensity data. Palmer CrystalMaker Software Ltd, Centre for Innovation, Oxford University Begbroke Science Park, Woodstock Road, Begbroke, Oxfordshire OX5 1PF, UK. The latter displays the three-dimensional diffraction data with searched or predicted peak positions and is used to determine and confirm integration regions. SingleCrystal 4: real-time multi-phase diffraction simulation David C. The former is used to calculate the hkl intensity data. STARGazer is composed of a data-processing component and a data-visualization component. This software creates hkl intensity data from three-dimensional ( x, y, TOF) diffraction data. The STARGazer data-processing software is used for neutron time-of-flight (TOF) single-crystal diffraction data collected using the IBARAKI Biological Crystal Diffractometer (iBIX) at the Japan Proton Accelerator Research Complex (J-PARC).
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