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- W24259988 abstract "This chapter establishes the potential of specific polymeric waveguide structures for ultrafast all-optical switching in low-loss fiber-communication windows, specifically at 1.55 mm. A distributed feedback (DFB) laser is a semiconductor diode laser, which allows the feedback of a single laser longitudinal cavity mode so that only that mode experiences gain and the laser operates at a single wavelength. Because only one cavity mode oscillates, mode locking is not possible, and a method known as “gain switching” can be used for producing pulses from these single-wavelength lasers. Low-power all-optical switching is demonstrated in the chapter by generating a 10-GHz pulse train from a continuous wave laser with dispersion-shifted fiber (DSF) as the nonlinear medium. The nonlinear refractive index measured in the polymer channel waveguides is about three orders of magnitude larger than that of silica glass. The electronic properties of polymers are determined by the conjugation length, which is the length over which the backbone planarity is maintained without interruption." @default.
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- W24259988 date "2001-01-01" @default.
- W24259988 modified "2023-10-14" @default.
- W24259988 title "Third-order optical nonlinearity in polydiacetylene waveguides at telecommunications wavelengths" @default.
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- W24259988 doi "https://doi.org/10.1016/b978-012513745-4/50078-0" @default.
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