This article provides information about using terahertz radiation based methods such as time-domain spectroscopy, ATR spectroscopy and terahertz reflection imaging for distinguishing of different kinds of gunpowder. The findings in this article prove that gunpowder does not have any sharp peaks in terahertz region of electromagnetic spectrum up to 2.5 THz, but also prove that distinguishing of different kinds of gunpowder is possible using different methods based on terahertz radiation. All presented results are connected to absorbance of gunpowder and other measured materials, because comparison of absorbance analysis is essential for distinguishing of gunpowder samples
We experimentally investigated the spectral fingerprints of high explosive cyclo;1,3,5; trimethylene...
Abstract. Electromagnetic waves with frequencies between 0.3 and 10 terahertz (THz) ≡ 10 – 300 cm-1...
Terahertz radiation is electromagnetic waves with frequencies from 0.1-10 THz. THz radiation can pas...
International audienceDetection of explosives has always been an important fact for homeland securit...
This project explores the scope of the cutting-edge terahertz time-domain (THz-TD) spectroscopy and ...
The terahertz (THz) frequency range is located between microwave and infrared radiation in the elect...
The terahertz (THz) frequency region is often defined as the last unexplored area of the electromagn...
In the field of security THz technology has promising applications because of the ability of THz rad...
Terahertz frequency radiation possesses a unique combination of desirable properties for noninvasive...
The terahertz spectrum of the explosive RDX has been measured using a conventional Fourier transform...
A broadband terahertz time-domain system (THz-TDS) has been developed in order to analyse several dr...
This work demonstrates terahertz time-domain spectroscopy (THz-TDS) in reflection configuration on a...
Terahertz methods have developed strongly in recent years resulting in an emergence of applications ...
We present results on the comparison of different THz technologies for the detection and identificat...
Terahertz waves (THz) help in determining the composition and the material thickness by using a nonc...
We experimentally investigated the spectral fingerprints of high explosive cyclo;1,3,5; trimethylene...
Abstract. Electromagnetic waves with frequencies between 0.3 and 10 terahertz (THz) ≡ 10 – 300 cm-1...
Terahertz radiation is electromagnetic waves with frequencies from 0.1-10 THz. THz radiation can pas...
International audienceDetection of explosives has always been an important fact for homeland securit...
This project explores the scope of the cutting-edge terahertz time-domain (THz-TD) spectroscopy and ...
The terahertz (THz) frequency range is located between microwave and infrared radiation in the elect...
The terahertz (THz) frequency region is often defined as the last unexplored area of the electromagn...
In the field of security THz technology has promising applications because of the ability of THz rad...
Terahertz frequency radiation possesses a unique combination of desirable properties for noninvasive...
The terahertz spectrum of the explosive RDX has been measured using a conventional Fourier transform...
A broadband terahertz time-domain system (THz-TDS) has been developed in order to analyse several dr...
This work demonstrates terahertz time-domain spectroscopy (THz-TDS) in reflection configuration on a...
Terahertz methods have developed strongly in recent years resulting in an emergence of applications ...
We present results on the comparison of different THz technologies for the detection and identificat...
Terahertz waves (THz) help in determining the composition and the material thickness by using a nonc...
We experimentally investigated the spectral fingerprints of high explosive cyclo;1,3,5; trimethylene...
Abstract. Electromagnetic waves with frequencies between 0.3 and 10 terahertz (THz) ≡ 10 – 300 cm-1...
Terahertz radiation is electromagnetic waves with frequencies from 0.1-10 THz. THz radiation can pas...