Combined, solid-state molecular property and gamma spectrometers for CBRN&E detection

Technologies for Homeland Security(2013)

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摘要
Nevada Nanotech Systems, Inc. (NevadaNano) has developed an automated, multi-sensor Chemical, Biological, Radiological, Nuclear and Explosive (CBRN&E) detection system to perform a multiple-measurement, orthogonal analysis of trace chemical samples and identify radioactive isotopes. One application is threat detection in shipping containers, where samples can be collected over long periods of time (hours to days) in order to detect low levels of threat molecules and radiation. This system, called the C-Scout™, uses a Molecular Property Spectrometer™ (MPS™) - a low-cost, low-power, micro-electromechanical-systems (MEMS) chip capable of measuring numerous thermodynamic and electrostatic molecular properties of sampled vapors and particles - coupled with a compact, highresolution, solid-state gamma spectrometer for identifying radioactive materials, including isotopes used in dirty bombs and nuclear weapons. C-Scout™ transmits results using a radio frequency communication system. Here we provide an overview of the system design and operation and present threat detection results from laboratory and field tests.
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关键词
explosive detection,gamma-ray spectroscopy,micromechanical devices,c-scout,cbrn&e detection,automated multisensor chemical,biological,radiological,nuclear and explosive detection system,dirty bombs,electrostatic molecular properties,explosives,isotopes,low-cost mems,low-power mems chip,microelectro-mechanical-systems chip,nuclear weapons,radio frequency communication system,radioactive isotopes,shipping containers,solid-state gamma spectrometer,solid-state molecular property spectrometer,thermodynamic properties,threat detection,trace chemical samples,vapors,classification,detection,molecular,radiation,sensor,spectrometer,trace,gamma ray spectroscopy
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