Spherical Neutron Polarimetry simulations. Case of pure magnetic signal: M real and Pi // Oz The incident polarisation vector is chosen parallel to the Z axis, i.e. perpendicular to the scattering vec
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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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From IN5 to IN5B IN5B is a fully redesigned instrument with many improvements which can be summarized in a single number: 60 time more intensity. This IN5 renaissance went through complexe mechanical
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Spherical Neutron Polarimetry simulations. Case of mixed nuclear/magnetic signal : N and M in quadrature, Pi // Oy The incident polarisation vector is chosen parallel to the Y axis, i.e. perpendicular
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Spherical Neutron Polarimetry simulations. Case of mixed nuclear/magnetic signal : N and M in quadrature, Pi // Oz The incident polarisation vector is chosen parallel to the Z axis, i.e. perpendicular
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Spherical Neutron Polarimetry simulations. Case of mixed nuclear/magnetic signal : N and M in quadrature, Pi // Ox The incident polarisation vector is chosen parallel to the X axis, i.e. parallel to t
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Spherical Neutron Polarimetry simulations. Case of pure magnetic signal: M complex and Pi // Oy The incident polarisation vector is chosen parallel to the Y axis, i.e. perpendicular to the scattering
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Spherical Neutron Polarimetry simulations. Case of pure magnetic signal: M complex and Pi // Oz The incident polarisation vector is chosen parallel to the X axis, i.e. around the scattering vector Q.
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Spherical Neutron Polarimetry simulations. Case of pure magnetic signal: M complex and Pi // Ox The incident polarisation vector is chosen parallel to the X axis, i.e. around the scattering vector Q.
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Spherical Neutron Polarimetry simulations. Case of pure magnetic signal: M real and Pi // Oy The incident polarisation vector is chosen parallel to the Y axis, i.e. perpendicular to the scattering vec
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