Abstract:
A method for detecting target material or explosives using Nuclear Quadrupole Resonance, comprises the steps of providing a sample material to test for a target material. The sample material is then irradiated with a first frequency from a continuous wave signal generator to create at least one sample material return frequency. A return frequency is then measured and it is determined whether the sample material contains the target material by comparing the return frequency to a known target material frequency in a library. The method allows for simultaneous irradiation of sample material and measuring the return frequency of the sample material. The method utilizes NQR to detect explosive material using a power safe for human scanning and testing.
Abstract:
A system and method for detecting at least one material under test (MUT) is presented. A Nuclear Quadrupole Resonance (NQR) measurement system includes a waveform generator configured to generate a continuous wave (CW) input signal comprising one or more frequencies. An RF shielded chamber receives the at least one MUT that is carried by a person walking through the chamber. A probe within the chamber illuminates the MUT with the CW signal and simultaneously receives possible NQR emissions from the at least one MUT. A bridge circuit is utilized to cancel the strong excitation CW signal from the generator which would otherwise mask the weak NQR emissions from the MUT that are received and detected by the measurement system. A detector can then detect the MUT based, at least in part, on the resonance signal.