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首页> 外文期刊>Lightwave Technology, Journal of >Beyond-Bandwidth Electrical Pulse Modulation of a TO-Can Packaged VCSEL for 10 Gbit/s Injection-Locked NRZ-to-RZ Transmission
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Beyond-Bandwidth Electrical Pulse Modulation of a TO-Can Packaged VCSEL for 10 Gbit/s Injection-Locked NRZ-to-RZ Transmission

机译:TO-Can封装的VCSEL的超宽带电脉冲调制,用于10 Gbit / s注入锁定NRZ-to-RZ传输

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摘要

The parametric characterization of a nonreturn- to-zero (NRZ) to return-to-zero (RZ) data format converter based on the external optical NRZ injection of a TO-46-can packaged vertical-cavity surface-emitting laser (VCSEL) directly modulated by a 10 GHz electrical pulse is demonstrated. The electrical-pulse modulation induced gain switching of the VCSEL is initiated under external optical NRZ data injection that increases the relaxation oscillation frequency of the homemade VCSEL from 2.2 to 7.4 GHz, thereby enabling its electrical modulation bandwidth up to 10 GHz. The external NRZ injection reduces the lasing threshold and enlarges the modulation depth of the VCSEL so that the converted RZ data pulsewidth can be shortened to 27 ps with a slightly increased peak-to-peak negative frequency chirp of 4.3 GHz (corresponding to a chirp parameter of 122 MHz/ps). The chirp and bit error rate (BER) display strong correlations with the injection power and the biased current of the VCSEL. With external injection, the receiving power required for achieving a BER below $10^{{-}9}$ at 10 Gbit/s is ${-}19.5$ dBm, and a power penalty of 16 dB is observed when the dc bias of the electrical-pulse modulated VCSEL is decreased by only 10% from the threshold condition.
机译:基于TO-46可以封装的垂直腔面发射激光器(VCSEL)的外部光学NRZ注入,对不归零(NRZ)到归零(RZ)数据格式转换器的参数表征演示了通过10 GHz电脉冲直接调制。 VCSEL的电脉冲调制引起的增益切换是在外部光学NRZ数据注入下启动的,从而将自制VCSEL的弛豫振荡频率从2.2 GHz增加到7.4 GHz,从而使其电调制带宽高达10 GHz。外部NRZ注入降低了激射阈值并扩大了VCSEL的调制深度,因此在4.3 GHz的峰峰值负频率线性调频(对应线性调频参数)的情况下,可以将转换后的RZ数据脉冲宽度缩短至27 ps 122 MHz / ps)。线性调频脉冲和误码率(BER)与VCSEL的注入功率和偏置电流密切相关。通过外部注入,在10 Gbit / s时实现BER低于$ 10 ^ {{-} 9} $所需的接收功率为$ {-} 19.5 $ dBm,当直流偏置为时,观察到功率损失为16 dB。电脉冲调制的VCSEL比阈值条件仅降低了10%。

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