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Enhancement of Nonlinear Phase Shift for Format Conversion in Silicon Waveguides

机译:硅波导格式转换的非线性相移的增强

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Different modulation formats may be required in different optical communication networks. Format conversion from intensity format to phase format is necessary to ensure the functions between long-haul transmission networks and metropolitan area networks. Cross-phase modulation (XPM) in silicon waveguides provides a promising way to realize all-optical integrated format conversion since a nonlinear phase shift is induced to the probe by the incident signal power. An on-off keying (OOK) signal can be converted to differential phase-shift keying (DPSK) signal if nonlinear phase shift of π is achieved. We numerically investigate the nonlinear phase shift caused by XPM in silicon waveguides by considering the influences of the walk-off effect, group-velocity dispersion, and nonlinear losses including two-photon absorption (TPA) and free-carrier absorption (FCA). The nonlinear phase shift is tried to be enhanced through waveguide design and wavelength management. The walk-off effect can be minimized by carefully choosing the zero dispersion wavelength of the used silicon waveguide and setting the signal and probe wavelengths symmetrically. Low and flat dispersion is beneficial to acquiring a large nonlinear phase shift. TPA and FCA will greatly reduce the nonlinear phase shift obtained from XPM and they should be effectively suppressed in order to realize high-quality format conversion.
机译:不同光通信网络中可能需要不同的调制格式。必须将从强度格式转换为相位格式的格式转换,以确保长途传输网络和大都市区域网络之间的功能。硅波导中的交叉相位调制(XPM)提供了实现全光学集成格式转换的有希望的方式,因为通过入射信号功率被引导到探针的非线性相移。如果实现π的非线性相移,则可以将开关键控(OOK)信号转换为差分相移键控(DPSK)信号。我们通过考虑步行效应,组速度分散和非线性损耗,包括双光子吸收(TPA)和自由载体吸收(FCA)的影响,在数值上研究由硅波导引起的XPM引起的非线性相移。通过波导设计和波长管理尝试增强非线性相移。通过小心地选择使用的硅波导的零色散波长并对对称地设定信号和探针波长来最小化步行效应。低和平坦的分散体有利于获取大的非线性相移。 TPA和FCA将大大减少从XPM获得的非线性相移,应有效地抑制它们以实现高质量的格式转换。

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