DocumentCode :
783558
Title :
High-sensitivity detection of narrowband light in a more intense broadband background using coherence interferogram phase
Author :
Coutinho, Ricardo C. ; Selviah, David R. ; Griffiths, Hugh D.
Author_Institution :
Brazilian Navy Weapon Syst. Directorate, Rio de Janeiro
Volume :
24
Issue :
10
fYear :
2006
Firstpage :
3654
Lastpage :
3662
Abstract :
This paper describes an optical interferometric detection technique, known as the interferogram phase step shift, which detects narrowband, coherent, and partially coherent light in more intense broadband incoherent background light using changes in the phase gradient with the optical path difference of the coherence interferogram to distinguish the bandwidth or coherence of the signal from that of the background. The detection sensitivity is assessed experimentally by measuring the smallest signal-to-background ratio or signal-to-clutter ratio (SCR), which causes a detectable change in the self-coherence interferogram phase. This minimum detectable SCR (MDSCR) is measured for the multimode He-Ne laser, resonant-cavity light-emitting diode (LED), narrowband-filtered white light, and LED signal sources in a more intense tungsten-halogen-lamp white-light background. The highest MDSCRs to date, to the authors´ knowledge, are -46.42 dB for coherent light and -31.96 dB for partially coherent light, which exceed those of existing automatic single-domain techniques by 18.97 and 4.51 dB with system input dynamic ranges of 19.24 and 11.39 dB, respectively. The sensitivity dependence on the signal-to-system bandwidth ratio and on the relative offset of their central wavelengths is also assessed, and optimum values are identified
Keywords :
light coherence; optical sensors; phase shifting interferometry; photodetectors; He-Ne laser; LED signal sources; automatic single-domain technique; coherence interferogram phase; high-sensitivity detection; intense broadband background; interferogram phase step shift; light coherence; light emitting diode; multimode laser; narrowband light; narrowband-filtered white light; optical interferometric detection; optical path difference; phase gradient; resonant-cavity LED; self-coherence interferogram phase; signal-to-background ratio; signal-to-clutter ratio; signal-to-system bandwidth ratio; tungsten-halogen-lamp; Bandwidth; Light emitting diodes; Narrowband; Optical detectors; Optical interferometry; Optical sensors; Phase detection; Phase measurement; Resonance; Thyristors; Correlators; envelope detection; gas detectors; homodyne detection; missile detection and tracking; object detection; optical signal detection; phase detection; photodetectors;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2006.881851
Filename :
1707827
Link To Document :
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