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Optical transmission of narrowband millimeter-wave signals

机译:窄带毫米波信号的光传输

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摘要

We describe experimentally and theoretically three techniques used to transmit narrowband millimeter-wave (MM-wave) analog signals over optical fiber: 1) narrowband MM-wave optical transmitters based on resonant modulation of monolithic semiconductor lasers, 2) feedforward optical modulation, and 3) a passively mode-locked laser operating in an optoelectronic phase-locked loop. The resonant modulation response at the cavity round-trip frequency is fully characterized for multiple-contact lasers under various bias conditions. Issues such as modulation efficiency, passband bandwidth, noise, and intermodulation distortion are addressed. A system implementation of resonant modulation is presented in which two simultaneous 2.5-Mb/s BPSK channels centered at a subcarrier frequency of 41 GHz is transmitted over 400 m of single-mode fiber. Simple microstrip matching circuits are fabricated at 41 GHz to couple the MM-wave signals into the laser. Resonant modulation of single-contact lasers is also reported. Next, implementation of a tunable MM-wave (30-300 GHz) optical transmitter based on feedforward optical modulation is presented, and the fundamental performance of this technique investigated in terms of noise and dynamic range. Feedforward modulation is used to transmit 300-Mb/s data at 39 GHz over 2.2 km of single-mode fiber. Finally, a passively mode-locked monolithic semiconductor laser operating in an optoelectronic phase-locked loop is implemented as a narrowband MM-wave optical transmitter at 46 GHz. The phase-locked loop bandwidth, MM-wave tracking capability, and fundamental limit to the stability of the MM-wave subcarrier is established. The relative merits of the three techniques are discussed and compared. The MM-wave subcarrier transmission results presented here represent the highest reported to date.
机译:我们在实验上和理论上描述了三种用于在光纤上传输窄带毫米波(MM波)模拟信号的技术:1)基于单片半导体激光器的谐振调制的窄带MM波光发射机,2)前馈光调制和3 )在光电锁相环中运行的无源锁模激光器。对于在各种偏置条件下的多触点激光器,谐振腔在往返频率处的谐振调制响应已得到充分表征。解决了诸如调制效率,通带带宽,噪声和互调失真等问题。提出了一种谐振调制的系统实现,其中以41 GHz子载波频率为中心的两个同时的2.5 Mb / s BPSK信道在400 m单模光纤上传输。简单的微带匹配电路以41 GHz的频率制造,以将MM波信号耦合到激光器中。还报道了单触点激光器的共振调制。接下来,介绍了基于前馈光调制的可调谐MM波(30-300 GHz)光发射机的实现,并从噪声和动态范围方面研究了该技术的基本性能。前馈调制用于在2.2 km的单模光纤上以39 GHz的频率传输300 Mb / s的数据。最后,将在光电锁相环中工作的无源锁模单片半导体激光器实现为46 GHz的窄带MM波光发射机。建立了锁相环带宽,MM波跟踪能力以及MM波副载波稳定性的基本限制。讨论并比较了这三种技术的相对优点。此处介绍的MM波子载波传输结果代表了迄今为止报道的最高水平。

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