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Carrier-assisted differential detection 被引量:6
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作者 William Shieh chuanbowen sun Honglin Ji 《Light(Science & Applications)》 SCIE EI CAS CSCD 2020年第1期1835-1843,共9页
To overcome power fading induced by chromatic dispersion in optical fiber communications,optical field recovery is a promising solution for direct detection short-reach applications,such as fast-evolving data center i... To overcome power fading induced by chromatic dispersion in optical fiber communications,optical field recovery is a promising solution for direct detection short-reach applications,such as fast-evolving data center interconnects(DCIs).To date,various direct detection schemes capable of optical field recovery have been proposed,including Kramers−Kronig(KK)and signal−signal beat interference(SSBI)iterative cancellation(IC)receivers.However,they are all restricted to the single sideband(SSB)modulation format,thus conspicuously losing half of the electrical spectral efficiency(SE)compared with double sideband(DSB)modulation.Additionally,SSB suffers from the noise folding issue,requiring a precise optical filter that complicates the receiver design.As such,it is highly desirable to investigate the field recovery of DSB signals via direct detection.In this paper,for the first time,we propose a novel receiver scheme called carrier-assisted differential detection(CADD)to realize optical field recovery of complex-valued DSB signals via direct detection.First,CADD doubles the electrical SE compared with the KK and SSBI IC receivers by adopting DSB modulation without sacrificing receiver sensitivities.Furthermore,by using direct detection without needing a precise receiver optical filter,CADD can employ cost-effective uncooled lasers as opposed to expensive temperature-controlled lasers in coherent systems.Our proposed receiver architecture opens a new class of direct detection schemes that are suitable for photonic integration analogous to homodyne receivers in coherent detection. 展开更多
关键词 RECEIVER PRECISE COHERENT
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