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    Beam profile and image transfer study in multimode optical fiber coupling

    , Article Journal of Applied Sciences ; Volume 8, Issue 22 , 2008 , Pages 4210-4214 ; 18125654 (ISSN) Asadpour, A ; Golnabi, H ; Sharif University of Technology
    2008
    Abstract
    In this study the optical beam transfer and imaging in an optical fiber coupling is discussed. In coupling two fibers, some measurements from intensity perspective are performed and intensity profile is investigated. A theoretical model for the power transmission in fiber coupling is developed and theoretical function is compared with the experimental results. The amount of light delivered to the receiving fiber depends on the acceptance angle of the receiving fiber and the core cross sections of both fibers. Intensity profile function obtained theoretically agrees well with the measured results. The intensity variation as a function of the air gap variation is investigated in this article.... 

    Fiber output beam shape study using imaging technique

    , Article Journal of Applied Sciences ; Volume 10, Issue 4 , 2010 , Pages 312-318 ; 18125654 (ISSN) Asadpour, A ; Golnabi, H ; Sharif University of Technology
    Abstract
    In this study the output beam profiles of the single mode and multimode optical fibers are investigated by the cross sectional imaging technique. Different experiments are performed for the single mode and multimode fibers and the captured images are compared. The relative near field intensity distribution and their relative changes with respect to the distance is examined and some fiber parameters are obtained. A similar pattern in the real-time image is observed for the two type fibers and major differences are discussed. Using this method it is possible to determine the numerical aperture of the illuminated fiber, which is about 0.22 for the tested fiber. The effect of coherency of the... 

    Efficient geometry of surface plasmon resonance based fiber optic sensor

    , Article 2018 IEEE 38th International Conference on Electronics and Nanotechnology, ELNANO 2018 - Proceedings, 24 April 2018 through 26 April 2018 ; 2018 , Pages 351-354 ; 9781538663837 (ISBN) Abedini, M ; Ahmadi, M ; Mohammadpour, R ; Sasanpour, P ; Sharif University of Technology
    Abstract
    The efficient structure for optical fiber based surface Plasmon resonance sensor has been investigated. The sensor structure is based on removing the cladding of a multimode optical fiber and replacing it with thin film of gold. The incident light inside the fiber will excite surface plasmons which will be resulted in the absorption in specific wavelengths. The absorption behavior is dependent on the dielectric constants at the vicinity of the metallic thin film. Based on the amount of removed cladding and deposition regions on the core structure of the fiber, different configurations can be considered. Based on the computational analysis, we have studied performance of sensor for three...