Reactor hall, thermal beam H11 Monochromator 28 Ge[115] crystals of 1 x 5 x 1 cm 3 take-off-angle 135° Germanium [hkl] wavelengths λ /Å 557 1.051 337 1.277 551 1.464 335 1.594 (optimum λ) 331 2.398 11
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Simulated experiment A typical neutron powder diffraction experiment with D2B: The polychromatic beam from the thermal beam H11 is collimated and is diffracted by the Ge monochromator at a large take-
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Guide hall n°1, cold guide H143 Data Collection Method Quasi-Laue Ni/Ti multilayer band-pass filter (δλ/λ=30%) Choice of neutron λ ranges ~2.9 to 3.9 Å, 3.6 to 4.7 Å, 4.1 to 5.3 Å Collimation Pinholes
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Phone on the instrument: +33(0)4 76 20 7055 First Responsible BLAKELEY Matthew Co-Responsible(s) GAJDOS Lukas Click on name to obtain contact information.
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Guide hall, thermal beam H25 distance reactor-core to monochromator : 65 m Monochromator crystal d-spacing (Å) k i (Å -1 ) flux (10 7 cm -2 .s -1 ) PG(002) 3.355 2.662 3.5 4.10 6.0 Heusler(111) 3.435
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Pulsed Magnetic Field High magnetic fields for neutron diffraction A magnetic field often induces an unexpected magnetic structure when various interactions are competing. However, only moderate dc ma
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Phone on the instrument: +33(0)4 76 20 7021 First Responsible BOURDAROT Frederic Co-Responsible(s) SCHMIDT Wolfgang F Click on name to obtain contact information.
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Phone on the instrument: +33(0)4 76 20 7143 First Responsible SUARD Emmanuelle Co-Responsible(s) FERNANDEZ DIAZ Maria Teresa RITTER Clemens Technician(s) GENDRIN Ludovic Click on name to obtain contac
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Reactor hall, thermal beam H13 beam tube Ø 170 mm Monochromator crystal dhkl (Å ) ki (Å -1 ) flux (10 7 n.cm -2 s -1 ) Conditions polarised Heusler (111) (230x150mm 2 ) 3.437 2.662 4.1 8.0 1.05 7.0 0.
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D3 - The Spin Polarised Hot Neutron Beam Facility It is a very versatile diffractometer for magnetic structure analysis. It offers several set-ups: a high field set-up for 1D polarimetry up to 10 Tesl
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