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Mode Suppression in Injection Locked Multi-Mode and Single-Mode Lasers for Optical Demultiplexing

机译:用于光解复用的注入锁定多模和单模激光器中的模式抑制

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Optical injection locking has been demonstrated as an effective filter for optical communications. These optical filters have advantages over conventional passive filters, as they can be used on active material, allowing them to be monolithically integrated onto an optical circuit. We present an experimental and theoretical study of the optical suppression in injection locked Fabry–Pérot and slotted Fabry–Pérot lasers. We consider both single frequency and optical comb injection. Our model is then used to demonstrate that improving the Q factor of devices increases the suppression obtained when injecting optical combs. We show that increasing the Q factor while fixing the device pump rate relative to threshold causes the locking range of these demultiplexers to asymptotically approach a constant value.
机译:光学注入锁定已被证明是用于光学通信的有效滤波器。这些滤光片具有优于常规无源滤光片的优势,因为它们可以用于活性材料,从而可以将它们单片集成到光路中。我们介绍了对注入锁定Fabry–Pérot和开槽Fabry–Pérot激光器中的光学抑制的实验和理论研究。我们考虑单频和光梳注入。然后,我们的模型用于证明改善设备的Q因子会增加注入光学梳时获得的抑制。我们表明,在固定器件泵速(相对于阈值)的同时增加Q因子会导致这些多路分解器的锁定范围渐近地接近恒定值。

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