Simulated experiment From neutron source to detector in a high-field configuration Neutrons from the reactor are moderated in the graphite hot source so that the maximum flux is at a short wavelength.
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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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Simulated experiment The thermal neutron beam from the reactor is divided into two parallel beams, one for D2B, the other for D20. The D20 beam first reaches one of its four monochromators. The monoch
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Simulated experiment The polychromatic neutron beam from the hot neutron beam tube H8 is diffracted by the monochromator, where a single wavelength is selected. The diffracted beam passes through a fi
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Simulated experiment Beam from cold guide H15 arrives at vertically focussing graphite monochromators. The monochromatic beam passes through a Be filter and arrives at the supermirror bender polariser
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Simulated experiment Beam from cold guide H15 arrives at vertically focussing graphite monochromators. The monochromatic beam passes through a Be filter and arrives at the supermirror bender polariser
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Simulated experiment The polychromatic beam from the hot neutron tube H3 arrives at the monochromator. The monochromatic diffracted beam reaches the sample – a single crystal - located at the centre o
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Simulated experiment The animation shows the typical measuring strategy of a three axis spectrometer like IN8. The monochromator selects a beam of neutrons in a narrow energy band. The analyser is pos
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Simulated experiment The white beam (polychromatic) from the thermal tube H11 arrives at the monochromator. Monochromatic diffracted beams reache the sample – a single crystal - located at the centre
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Simulated experiment A polychromatic (white), neutron beam is partially monochromatised by the two counter-rotating disc choppers, generating a packet of neutrons which then falls upon the monochromat
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