most citedmini-TimeCube as a Neutron Scatter Camera

7 citations · 9 across the 2 of their papers we have counts for

collaborators

5 papers

physics.ins-det2019

Directionally Accelerated Detection of an Unknown Second Reactor with Antineutrinos for Mid-Field Nonproliferation Monitoring

D. L. Danielson, O. A. Akindele, M. Askins +67

When monitoring a reactor site for nuclear nonproliferation purposes, the presence of an unknown or hidden nuclear reactor could be obscured by the activities of a known reactor of…

physics.ins-det20192 cited

Far-Field Monitoring of Reactor Antineutrinos for Nonproliferation

Viacheslav A. Li

Numerous experimental efforts have shown that antineutrino-based monitoring provides a non-intrusive means to estimate the fissile content and relative thermal power of nuclear rea…

physics.ins-det20197 cited

mini-TimeCube as a Neutron Scatter Camera

Glenn R. Jocher, John Koblanski, Viacheslav A. Li +6

We present Monte Carlo (MC) simulation results from a study of a compact plastic-scintillator detector suitable for imaging fast neutrons in the 1 -- 10 MeV energy range: the miniT…

physics.ins-det2019

A prototype for SANDD: A highly-segmented pulse-shape-sensitive plastic scintillator detector incorporating silicon photomultiplier arrays

Viacheslav A. Li, Timothy M. Classen, Steven A. Dazeley +5

We report the first clear observation of neutron/gamma-ray pulse-shape sensitivity of a fully-instrumented 8 8 array of plastic scintillator segments coupled to two 5 cm $…

physics.ins-det2018

WAVE: Machine Learning for Full-Waveform Time-Of-Flight Detectors

Glenn R. Jocher, Kurtis Nishimura, John Koblanski +1

We propose a WAveform Vector Exploitation (WAVE) deep neural network for full-waveform Time-Of-Flight (TOF) physics detectors, and evaluate its performance against traditional reco…