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Simultaneous wavelength and orbital angular momentum demultiplexing using tunable MEMS-based Fabry-Perot filter

机译:使用可调谐的基于mEms的法布里 - 珀罗滤波器的同时波长和轨道角动量多路分解

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摘要

In this paper, we experimentally demonstrate simultaneous wavelength and orbital angular momentum (OAM) multiplexing/demultiplexing of 10 Gbit/s data streams using a new on-chip micro-component-tunable MEMS-based Fabry-Perot filter integrated with a spiral phase plate. In the experiment, two wavelengths, each of them carrying two channels with zero and nonzero OAMs, form four independent information channels. In case of spacing between wavelength channels of 0.8 nm and intensity modulation, power penalties relative to the transmission of one channel do not exceed 1.45, 0.79 and 0.46 dB at the harddecision forward-error correction (HD-FEC) bit-error-rate (BER) limit 3.8 × 10□3 when multiplexing a Gaussian beam and OAM beams of azimuthal orders 1, 2 and 3 respectively. In case of phase modulation, power penalties do not exceed 1.77, 0.54 and 0.79 dB respectively. At the 0.4 nm wavelength grid, maximum power penalties at the HD-FEC BER threshold relative to the 0.8 nm wavelength spacing read 0.83, 0.84 and 1.15 dB when multiplexing a Gaussian beam and OAM beams of 1st, 2nd and 3rd orders respectively. The novelty and impact of the proposed filter design is in providing practical, integrable, cheap, and reliable transformation of OAM states simultaneously with the selection of a particular wavelength in wavelength division multiplexing (WDM). The proposed on-chip device can be useful in future high-capacity optical communications with spatial-and wavelengthdivision multiplexing, especially for short-range communication links and optical interconnects.
机译:在本文中,我们通过实验证明了使用集成了螺旋相位板的新型片上微元件可调谐基于MEMS的Fabry-Perot滤波器,可同时进行10 Gbit / s数据流的波长和轨道角动量(OAM)复用/解复用。在实验中,两个波长(每个波长承载两个带有零和非零OAM的信道)形成四个独立的信息信道。如果波长通道之间的间隔为0.8 nm,并且强度调制,则在硬判决前向纠错(HD-FEC)误码率(HD-FEC)下,相对于一个通道的传输功率损失不会超过1.45、0.79和0.46 dB当多路复用分别为1、2和3方位角的高斯光束和OAM光束时,BER)限制为3.8×10□3。在进行相位调制的情况下,功率损失分别不超过1.77、0.54和0.79 dB。在0.4 nm波长网格上,当分别复用第一,第二和第三级的高斯光束和OAM光束时,相对于0.8 nm波长间隔,HD-FEC BER阈值处的最大功率损失为0.83、0.84和1.15 dB。所提出的滤波器设计的新颖性和影响在于,在波分复用(WDM)中选择特定波长的同时,提供了OAM状态的实用,可集成,廉价和可靠的转换。所提出的片上设备可用于未来的具有空间和波分复用的高容量光通信,特别是对于短距离通信链路和光互连。

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