
handle: 20.500.14243/31661 , 2108/33105
The VESUVIO spectrometer at the ISIS pulsed neutron source performs inelastic neutron scattering at high-energy and wave vector transfers, employing gold and uranium resonant foils. A factor of two improvement in the instrumental resolution has been achieved by making use of the double filter difference method. Experimental results are presented for measurements on polycrystalline Pb, which indicate that accurate measurements of single-particle momentum distribution n(p) in quantum fluids are now possible at eV energy transfers.
energy transfer, polycrystalline material, spectrometers, neutron instrument, kinetic energy, neutron scattering, neutron instruments backscattering, calibration, Settore FIS/03 - FISICA DELLA MATERIA, Monte Carlo method, uranium, neutron source, resonant foil, data reduction, optical resolving power, deep inelastic neutron scattering; neutron instruments backscattering; calibration; data reduction; energy transfer; kinetic energy; Monte Carlo methods; neutron scattering; neutron sources; optical resolving power; polycrystalline materials; uranium; deep inelastic neutron scattering; neutron instruments; resonant foils; wave vectors; spectrometers, deep inelastic neutron scattering, wave vector
energy transfer, polycrystalline material, spectrometers, neutron instrument, kinetic energy, neutron scattering, neutron instruments backscattering, calibration, Settore FIS/03 - FISICA DELLA MATERIA, Monte Carlo method, uranium, neutron source, resonant foil, data reduction, optical resolving power, deep inelastic neutron scattering; neutron instruments backscattering; calibration; data reduction; energy transfer; kinetic energy; Monte Carlo methods; neutron scattering; neutron sources; optical resolving power; polycrystalline materials; uranium; deep inelastic neutron scattering; neutron instruments; resonant foils; wave vectors; spectrometers, deep inelastic neutron scattering, wave vector
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