We report an inverse Spatially Offset Raman Spectrometer capable of non-invasively identifying packaged substances from a distance. Usual inverse SORS spectrometer has a non-contact distance that is equivalent to the focal distance of the collection system. In this work we demonstrate the defocused geometry with a modified data analysis method capable of making inverse SORS measurements from a distance greater than the focal distance of the collection lenses. With the defocused geometry we were able to detect acetaminophen, concealed inside a 2 mm thick plastic bottle, at a non-contact distance of 30 cm.3 page(s
The detection of poisonous chemicals enclosed in daily necessaries is prerequisite essential for hom...
Noninvasive standoff deep Raman spectroscopy has been utilised for the detection of explosives precu...
In this paper, spatially offset Raman spectroscopy (SORS) is demonstrated for non-invasively investi...
Current concerns regarding terrorism and international crime highlight the need for new techniques f...
Spatially offset Raman spectroscopy (SORS) is demonstrated for the non-contact detection of energeti...
Spatially offset Raman spectroscopy (SORS) is demonstrated for the non-contact detection of energeti...
Spatially offset Raman spectroscopy (SORS) is demonstrated for the non-contact detection of energeti...
Raman spectroscopy, when used in spatially offset mode, has become a potential tool for the identifi...
Non-destructive subsurface detection of encapsulated, coated, or seal-packaged foods and pharmaceuti...
In this paper, spatially offset Raman spectroscopy (SORS) is demonstrated for noninvasively investig...
Measurement and comparison of NaNO3 powder concealed in opaque and semi-transparent plastic bottles ...
Deep Raman spectroscopy has been utilized for the standoff detection of concealed chemical threat ag...
In this paper, we demonstrate the ability of portable Raman spectroscopy and benchtop spatially offs...
A time-resolved inverse spatially offset Raman spectrometer was constructed for depth profiling of R...
Deep Raman Spectroscopy is a domain within Raman spectroscopy consisting of techniques that facilita...
The detection of poisonous chemicals enclosed in daily necessaries is prerequisite essential for hom...
Noninvasive standoff deep Raman spectroscopy has been utilised for the detection of explosives precu...
In this paper, spatially offset Raman spectroscopy (SORS) is demonstrated for non-invasively investi...
Current concerns regarding terrorism and international crime highlight the need for new techniques f...
Spatially offset Raman spectroscopy (SORS) is demonstrated for the non-contact detection of energeti...
Spatially offset Raman spectroscopy (SORS) is demonstrated for the non-contact detection of energeti...
Spatially offset Raman spectroscopy (SORS) is demonstrated for the non-contact detection of energeti...
Raman spectroscopy, when used in spatially offset mode, has become a potential tool for the identifi...
Non-destructive subsurface detection of encapsulated, coated, or seal-packaged foods and pharmaceuti...
In this paper, spatially offset Raman spectroscopy (SORS) is demonstrated for noninvasively investig...
Measurement and comparison of NaNO3 powder concealed in opaque and semi-transparent plastic bottles ...
Deep Raman spectroscopy has been utilized for the standoff detection of concealed chemical threat ag...
In this paper, we demonstrate the ability of portable Raman spectroscopy and benchtop spatially offs...
A time-resolved inverse spatially offset Raman spectrometer was constructed for depth profiling of R...
Deep Raman Spectroscopy is a domain within Raman spectroscopy consisting of techniques that facilita...
The detection of poisonous chemicals enclosed in daily necessaries is prerequisite essential for hom...
Noninvasive standoff deep Raman spectroscopy has been utilised for the detection of explosives precu...
In this paper, spatially offset Raman spectroscopy (SORS) is demonstrated for non-invasively investi...