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      Large-scale remotely interrogated arrays of fiber-optic interferometric sensors for underwater acoustic applications

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      IEEE Sensors Journal
      Institute of Electrical and Electronics Engineers (IEEE)

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          Optical power handling capacity of low loss optical fibers as determined by stimulated Raman and brillouin scattering.

          The effect of stimulated Raman and Brillouin scattering on the power handling capacity of optical fibers is considered and found to be important especially when low loss optical fibers are used. A critical power below which stimulated effects may be neglected is defined for forward and backward Raman scattering and for backward Brillouin scattering. This critical power is determined by the effective core area A, the small signal attenuation constant of the fiber alpha, and the gain coefficient for the stimulated scattering process (gamma0), by the approximate relation P(crit) approximately 20Aalpha/(gamma0). For a fiber with 20-dB/km attenuation and an area of 10(-7) cm(2)P(crit) approximately 35 mW for stimulated Brillouin scattering. For stimulated Raman scattering P(crit) is approximately two orders of magnitude higher. It is concluded that these effects must be considered in the design of optical communication systems using low loss fibers.
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            Fiber optics strain gauge.

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              Homodyne demodulation scheme for fiber optic sensors using phase generated carrier

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                Author and article information

                Journal
                IEEE Sensors Journal
                IEEE Sensors J.
                Institute of Electrical and Electronics Engineers (IEEE)
                1530-437X
                February 2003
                February 2003
                : 3
                : 1
                : 19-30
                Article
                10.1109/JSEN.2003.810102
                a7d0ee45-fd74-4edf-afc9-e86d859c9119
                © 2003
                History

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