Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Anumol Dominic"'
Publikováno v:
Journal of Lightwave Technology. 37:5641-5646
Surface plasmon resonance-based fiber optic sensor with multilayer heterojunction is simulated and analyzed. The constituent materials are ZBLAN fluoride core, NaF clad, amorphous Si layer, Ag layer, Al2O3 interlayer, and graphene monolayer. The main
Autor:
Anumol Dominic, Anuj K. Sharma
Publikováno v:
Plasmonics. 14:1839-1842
The dynamic nature of radiation damping is exploited in a fluoride fiber–based plasmonic sensor in terms of variable temperature (T) and Ag layer thickness (dm) at certain near-infrared wavelengths. The optimum point of radiation damping, which is
Autor:
Anumol Dominic, Anuj K. Sharma
Publikováno v:
IEEE Sensors Journal. 18:9207-9213
The performance of a Kretschmann configuration-based surface plasmon resonance sensor with fluoride glass prism, Ag layer, and graphene monolayer is simulated and analyzed under the coordinated tuning of temperature (293–373 K), near infrared (NIR)
Autor:
Anumol Dominic, Anuj K. Sharma
Publikováno v:
Optical Fiber Technology. 45:405-410
The performance of a fiber optic SPR sensor with ZBLAN fluoride glass core, NaF clad, Ag layer, and graphene monolayer is simulated and analyzed under the synchronized tuning of temperature, near infrared (NIR) wavelength, and graphene’s chemical p
Autor:
Anuj K. Sharma, Anumol Dominic
Publikováno v:
IEEE Sensors Journal. 18:4053-4058
Surface plasmon resonance (SPR) based fluoride fiber-optic sensor with graphene and sodium fluoride layers is simulated and analyzed in near infrared (NIR) for detection of alcohols. Through this paper, the fluoride fiber has been employed for the fi
Autor:
Anuj K. Sharma, Anumol Dominic
Publikováno v:
IEEE Photonics Technology Letters. 30:95-98
Surface plasmon resonance sensor based on “ZBLAN fluoride glass-Ag-graphene” plasmonic structure is proposed in the near-IR region. The influence of graphene chemical potential ( $\mu $ ) in combination with the number of layers (L) of graphene o