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首页> 外文期刊>Lightwave Technology, Journal of >Ultra-Low-Power Single-Polarization QAM-16 Generation Without DAC Using a CMOS Photonics Based Segmented Modulator
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Ultra-Low-Power Single-Polarization QAM-16 Generation Without DAC Using a CMOS Photonics Based Segmented Modulator

机译:使用基于CMOS光子的分段调制器的无DAC的超低功耗单极化QAM-16生成

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摘要

Long-haul communication systems are requiring more and more spectral efficiency as data rates increase. QAM-16 is a promising candidate for each wavelength in a Wavelength-Division Multiplexed (WDM) system, providing double the spectral efficiency of Quadrature Phase-Shift Keying (QPSK) and four times the spectral efficiency of traditional On–Off Keying (OOK). However, generation of QAM-16 signals can be complex, expensive, and power-hungry when electrical Digital-to-Analog Converters (DACs) are required. We have developed a QAM-16 modulator that precludes the use of an electrical DAC while simultaneously keeping the optical architectural complexity similar to that of a traditional In-phase/Quadrature (IQ) modulator. Using this modulator, we experimentally demonstrate single-polarization, back-to-back transmission, and homodyne detection of QAM-16 signals at rates up to 28.125 Gsymbols/s, resulting in single-polarization system per-wavelength bit rates up to 112.5 Gb/s. This would translate to dual-polarization system per-wavelength bit rates up to 225 Gb/s. This is done using a segmented modulator built on an ultra-low-power CMOS Photonics platform, allowing the modulator and drivers to consume less than 1 W of power.
机译:随着数据速率的提高,远程通信系统需要越来越高的频谱效率。 QAM-16是波分复用(WDM)系统中每个波长的有希望的候选者,它提供两倍于正交相移键控(QPSK)的光谱效率,并且是传统开关键控(OOK)光谱效率的四倍。 。但是,当需要电数模转换器(DAC)时,QAM-16信号的生成可能很复杂,昂贵且耗电。我们开发了QAM-16调制器,该调制器可避免使用电DAC,同时保持类似于传统同相/正交(IQ)调制器的光学架构复杂性。使用该调制器,我们通过实验证明了QAM-16信号的单极化,背对背传输和零差检测,速率高达28.125 Gsymbols / s,从而导致单极化系统的每波长比特率高达112.5 Gb / s。这将转换为双极化系统的每波长最高225 Gb / s的比特率。这是使用构建在超低功耗CMOS光子平台上的分段调制器完成的,该调制器和驱动器消耗的功率不到1 W.

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