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Coolerless integrated circuit and floating wavelength grid photonic integrated circuit (PIC) for WDM transmission networks

机译:用于WDM传输网络的无冷却器集成电路和浮式波长网格光子集成电路(PIC)

摘要

A coolerless photonic integrated circuit (PIC), such as a semiconductor electro-absorption modulator/laser (EML) or a coolerless optical transmitter photonic integrated circuit (TxPIC), may be operated over a wide temperature range at temperatures higher then room temperature without the need for ambient cooling or hermetic packaging. Since there is large scale integration of N optical transmission signal WDM channels on a TxPIC chip, a new DWDM system approach with novel sensing schemes and adaptive algorithms provides intelligent control of the PIC to optimize its performance and to allow optical transmitter and receiver modules in DWDM systems to operate uncooled. Moreover, the wavelength grid of the on-chip channel laser sources may thermally float within a WDM wavelength band where the individual emission wavelengths of the laser sources are not fixed to wavelength peaks along a standardized wavelength grid but rather may move about with changes in ambient temperature. However, control is maintained such that the channel spectral spacing between channels across multiple signal channels, whether such spacing is periodic or aperiodic, between adjacent laser sources in the thermally floating wavelength grid are maintained in a fixed relationship. Means are then provided at an optical receiver to discover and lock onto floating wavelength grid of transmitted WDM signals and thereafter demultiplex the transmitted WDM signals for OE conversion.
机译:无冷却器光子集成电路(PIC)(例如半导体电吸收调制器/激光器(EML)或无冷却器光发射机光子集成电路(TxPIC))可以在较室温高的温度范围内工作,而无需需要环境冷却或密封包装。由于在TxPIC芯片上大规模集成了N个光传输信号WDM通道,因此具有新颖传感方案和自适应算法的DWDM系统新方法为PIC提供了智能控制,以优化其性能并允许DWDM中的光发送器和接收器模块系统在非冷却状态下运行。此外,片上通道激光源的波长网格可能会在WDM波长带内热浮动,在该波长带中,激光源的各个发射波长不会固定为沿标准波长网格的波长峰值,而是会随周围环境的变化而移动温度。然而,保持控制以使得在多个信号通道上的通道之间的通道光谱间隔,无论该间隔是周期性的还是非周期性的,都在热浮动波长网格中的相邻激光源之间保持固定的关系。然后在光接收器处提供装置以发现并锁定发射的WDM信号的浮动波长网格,然后解复用发射的WDM信号以进行OE转换。

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