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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Coherent Injection-Locking of Long-Cavity Colorless Laser Diodes With Low Front-Facet Reflectance for DWDM-PON Transmission
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Coherent Injection-Locking of Long-Cavity Colorless Laser Diodes With Low Front-Facet Reflectance for DWDM-PON Transmission

机译:低正面反射的长腔无色激光二极管的相干注入锁定,用于DWDM-PON传输

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Long-cavity colorless laser diodes with different front-facet antireflection (AR) coatings are employed to perform the wavelength injection-locked ON–OFF-keying (OOK) data transmission. By changing front-facet reflectance of laser diode from 0.2% to 1.2%, the received OOK data enhance its Q factor by 6.3% and reduces its bit error rate (BER) by more than two orders of magnitude, which benefits from the improved signal-to-noise ratio and extinction ratio by up to 8.0%. Enlarging the injection-locking power from –6 to –3 dBm essentially helps the long-cavity colorless laser diode to promote its receiving power sensitivity from –27.9 to –29.2 dBm at BER of 10$^{-9}$. However, the similar device with lower AR reflectance shows an opposite trend. The injection-locking-induced enhancement is limited within a frequency region controlled by the injection power, which results from a large disparity between continuous-wave injection and stimulated emission inside the long-cavity colorless laser diode. At same biased current and front-facet reflectance, a higher injection level provides a larger modulation throughput at a cost of decreasing bandwidth. The overinjection causes a limitation on frequency bandwidth of the long-cavity colorless laser diodes with lower front-facet reflectance. The numerical simulations with modified rate equations for the injection-locked long-cavity colorless laser diode with lower front-facet reflectance also elucidate that the transmission degrades distinctly at larger injection powers.
机译:具有不同正面抗反射(AR)涂层的长腔无色激光二极管用于执行波长注入锁定的开关键(OOK)数据传输。通过将激光二极管的正面反射率从0.2%更改为1.2%,接收到的OOK数据将其Q因子提高了6.3%,并将其误码率(BER)降低了两个数量级以上,这得益于改进的信号噪声比和消光比高达8.0%。将注入锁定功率从–6扩大到–3 dBm,基本上可以帮助长腔无色激光二极管在BER为10时将其接收功率灵敏度从–27.9 dBm提高到–29.2 dBm。<公式> =“ TeX”> $ ^ {-9} $ 。但是,具有较低AR反射率的类似设备显示出相反的趋势。注入锁定引起的增强被限制在由注入功率控制的频率区域内,这是由连续波注入与长腔无色激光二极管内部的受激发射之间的巨大差异引起的。在相同的偏置电流和正面反射率下,较高的注入电平会以减小带宽的代价提供更大的调制吞吐量。过注入会限制具有较低正面反射率的长腔无色激光二极管的频率带宽。对于具有较低正面反射率的注入锁定长腔无色激光二极管,采用修改后的速率方程进行的数值模拟还说明,在较大注入功率下,透射率会明显下降。

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