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We demonstrate reconfigurable time slot interchange (TSI) at 40 Gb/s using four wave mixing and a programmable planar light wave circuit (PLC). The PLC is used to generate different controls that determine which bits undergo TSI.
We use the direct temporal domain approach to design spectrally periodic optical filters for pulse repetition rate multiplication (PRRM) with envelope shaping. In particular, we demonstrate a tunable lattice-form Mach-Zehnder interferometer using Silica-based planar lightwave circuit (PLC) for arbitrary 4-bit binary amplitude code generation at 40 GHz and to increase the repetition rate of a 10 GHz...
We demonstrate the generation of 20 GHz and 40 GHz pulse trains using a tunable planar lightwave circuit (PLC) and nonlinear wavelength conversion. The PLC is a 6-stage lattice-form Mach-Zehnder interferometer fabricated in silica-on-silicon technology.
We demonstrate a tunable planar lightwave circuit for arbitrary 4-bit binary code generation at 40 GHz. The device is a 6-stage lattice-form Mach-Zehnder interferometer fabricated in silica-on-silicon technology.
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