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Chirp-adjustable optical intensity modulator with tunable OCSR based on Sagnac interferometer

机译:基于Sagnac干涉仪的具有可调OCSR的线性调频光强度调制器

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In this paper a novel optical intensity modulator with tunable optical carrier-to-sideband ratio (OCSR) and adjustable chirp parameter is proposed and theoretically investigated. It is based on a bidirectional phase modulator (PM) and a tunable nonreciprocal optical phase shifter in a Sagnac interferometer (SI). Because no bias is necessary for a PM, the bias-drift problems are automatically removed. Besides, clockwise (CW) and counter clockwise (CCW) propagating lights travel in the same path so enhances robustness against environmental perturbations. In this modulator two radio frequency (RF) signals with opposite phases and tunable power ratio are applied to the bidirectional PM. Chirp parameter and OCSR of the modulator can be tuned by tuning the phase shift of the optical phase shifter and RF power ratio. Besides, this modulator can have two complementary balanced outputs. So common-mode noises such as relative intensity noise (RIN) of the laser can be suppressed in a microwave photonic link (MWPL) based on this modulator and using a balanced receiver. This novel modulator can also operate bidirectionally. An intensity modulated optical signal with tunable OCSR and chirp parameter is achieved by adjusting the optical phase shifter and the RF power ratio. The effect of the lossy SI and finite optical extinction ratio on the performance of the proposed modulator is theoretically investigated. In addition applications of the proposed chirp-adjustable modulator to overcome fiber dispersion-induced power penalty in a MWPL is investigated It is shown that by adjusting the chirp parameter, link distance for a given frequency (or bandwidth for a given link distance) doubles.
机译:本文提出了一种新型的光强度调制器,它具有可调的光载波边带比(OCSR)和可调的线性调频参数。它基于Sagnac干涉仪(SI)中的双向相位调制器(PM)和可调谐不可逆光学移相器。由于PM不需要偏置,因此偏置漂移问题会自动消除。此外,顺时针(CW)和逆时针(CCW)传播的光在同一路径中传播,因此增强了抵抗环境干扰的鲁棒性。在该调制器中,具有相反相位和可调功率比的两个射频(RF)信号被应用于双向PM。调制器的线性调频脉冲参数和OCSR可以通过调整光学移相器的相移和RF功率比来调整。此外,该调制器可以具有两个互补的平衡输出。因此,可以在基于此调制器并使用平衡接收器的微波光子链路(MWPL)中抑制共模噪声,例如激光器的相对强度噪声(RIN)。这种新颖的调制器也可以双向运行。通过调整光学移相器和RF功率比,可以实现具有可调OCSR和线性调频参数的强度调制光信号。理论上研究了有损耗SI和有限的消光比对所提出的调制器性能的影响。另外,研究了提出的线性调频调制器在克服MWPL中光纤色散引起的功率损失方面的应用。结果表明,通过调整线性调频参数,给定频率的链路距离(或给定链路距离的带宽)增加了一倍。

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