作者: Ranjan K. Bhowmik , Robert R. Doering , Lawrence E. Young , Sam M. Austin , Aaron Galonsky
DOI: 10.1016/0029-554X(77)90332-9
关键词: Neutron 、 Physics 、 Liquid scintillation counting 、 Beam (structure) 、 Cyclotron 、 Resolution (electron density) 、 Nuclear physics 、 Time of flight 、 Detector 、 State (functional analysis)
摘要: Abstract A new neutron time-of-flight facility at the Michigan State University Cyclotron Laboratory incorporates a magnetic beam swinger permitting measurement of angular distributions with stationary detector. large volume (2.7 l) liquid scintillation detector time resolution less than 200 ps was developed to exploit long flight paths (4–32 m) made possible by swinger. For 33 MeV neutrons an overall (energy) 550 (≅150 keV) has been achieved.