A Prototype Detector for Directional Measurement of the Cosmogenic Neutron Flux
arXiv:1108.4894 · doi:10.1016/j.nima.2012.01.021
Abstract
This paper describes a novel directional neutron detector prototype. The low pressure time projection chamber uses a mix of helium and CF4 gases. The detector reconstructs the energy and angular distribution of fast neutron recoils. This paper reports results of energy calibration using an alpha source and angular reconstruction studies using a collimated neutron source. The best performance is obtained with a 12.5% CF4 gas mixture. At low energies the target for fast neutrons transitions is primarily helium, while at higher energies, the fluorine contributes as a target. The reconstruction efficiency is both energy and target dependent. For neutrons with energies less than 20 MeV, the reconstruction efficiency is ~40% for fluorine recoils and ~60% for helium recoils.
final version
References in corpus (7)
- Production of Radioactive Isotopes through Cosmic Muon Spallation in KamLAND
- The physics models of FLUKA: status and recent development
- First Dark Matter Search Results from a Surface Run of the 10-L DMTPC Directional Dark Matter Detector
- Observation of the 'head-tail' effect in nuclear recoils of low-energy neutrons
- Charge amplification concepts for direction-sensitive dark matter detectors
- A Background-Free Direction-Sensitive Neutron Detector2 A Background-Free Direction-Sensitive Neutron Detector
- Transport properties of electrons in CF4
Cited by in corpus (4)
- Light, Unstable Sterile Neutrinos: Phenomenology, a Search in the IceCube Experiment, and a Global Picture
- Improving Dark Matter Searches by Measuring the Nucleon Axial Form Factor: Perspectives from MicroBooNE
- 1H(n,el) as a Cross Section Reference in a White Source Neutron Beam With the fissionTPC
- Demonstrating a directional detector based on neon for characterizing high energy neutrons