Detection of concealed and buried chemicals by using multifrequency excitations
Author(s) -
Yaohui Gao,
MengKu Chen,
ChiaEn Yang,
Yunching Chang,
Jim Yao,
Jiping Cheng,
Stuart Yin,
Rongqing Hui,
Paul Ruffin,
Christina Brantley,
Eugene Edwards,
Claire Luo
Publication year - 2010
Publication title -
journal of applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.699
H-Index - 319
eISSN - 1089-7550
pISSN - 0021-8979
DOI - 10.1063/1.3474651
Subject(s) - van de graaff generator , microwave , infrared , attenuation , electric field , signal (programming language) , excitation , materials science , chemistry , analytical chemistry (journal) , optoelectronics , optics , physics , computer science , beam (structure) , chromatography , quantum mechanics , programming language
In this paper, we present a new type of concealed and buried chemical detection system by stimulating and enhancing spectroscopic signatures with multifrequency excitations, which includes a low frequency gradient dc electric field, a high frequency microwave field, and higher frequency infrared (IR) radiations. Each excitation frequency plays a unique role. The microwave, which can penetrate into the underground and/or pass through the dielectric covers with low attenuation, could effectively transform its energy into the concealed and buried chemicals and increases its evaporation rate from the sample source. Subsequently, a gradient dc electric field, generated by a Van De Graaff generator, not only serves as a vapor accelerator for efficiently expediting the transportation process of the vapor release from the concealed and buried chemicals but also acts as a vapor concentrator for increasing the chemical concentrations in the detection area, which enables the trace level chemical detection. Finally, ...
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