Pictures The instrument Brisp2 008 The big shielding Internal Shielding BRISP at work Detector Monochromator Honeycomb collimator Sample chamber BRISP team Data reduction Standard treatment of BRISP r
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John Allibon, Bachir Ouladdiaf and Silvia Capelli at work on CYCLOPS. A general view By june 2009, CYCLOPS recorded its first Laue patterns. Less than 5 seconds were enough to get excellent data from
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Guide hall 1, End of the thermal neutron guide H24 Diffraction geometry Transmission or backscattering Neutron beam Flux at sample position about 10 8 n/cm 2 /s Wavelength range 0.8 - 3.2 Å 10 detecto
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Simulated experiment A principle of a neutron Laue diffractometer is extremely simple. When a single crystal is placed in a white beam it diffracts neutrons in many directions. The diffracted beams wh
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How fast is CYCLOPS ? This movie was recorded during the very first tests of the instrument in June 2009. It shows that exposures as short as a few seconds are enough to get excellent Laue patterns fr
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(png - 111 Ki) First tests. The figure shows the raw stitched Laue pattern (a) obtained with a ruby crystal in 20s of acquisition time. Figures (b) and (c) are the transformed to cylindrical geometry
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First Responsible Technician(s) DECARPENTRIE Philippe Click on name to obtain contact information.
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More details on the instrument This cut of the 3D layout shows the main parts of the instrument as they appear in the final project.
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Guide hall n°2, cold guide H522 Incident wavelength 3 ... 12Å Beam profile Incident beam divergence 20 mrad Beam cross section 55 x 120 mm 2 Velocity selector Incident wavelength 3 ... 12Å Velocity se
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D1B (CRG) High intensity two-axis powder diffractometer D1B is a high intensity powder diffractometer with a PSD covering the angular range 0.8 to 128.8º. Highly demand for real time experiments, and
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