High-capacity free-space optical communications using wavelength- and mode-division-multiplexing in the mid-infrared region

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作者
Kaiheng Zou
Kai Pang
Hao Song
Jintao Fan
Zhe Zhao
Haoqian Song
Runzhou Zhang
Huibin Zhou
Amir Minoofar
Cong Liu
Xinzhou Su
Nanzhe Hu
Andrew McClung
Mahsa Torfeh
Amir Arbabi
Moshe Tur
Alan E. Willner
机构
[1] University of Southern California,Department of Electrical Engineering
[2] Tianjin University,Ultrafast Laser Laboratory, College of Precision Instrument and Optoelectronics Engineering
[3] University of Massachusetts Amherst,Department of Electrical and Computer Engineering
[4] Tel Aviv University,School of Electrical Engineering
[5] University of Southern California,Dornsife Department of Physics & Astronomy
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Due to its absorption properties in atmosphere, the mid-infrared (mid-IR) region has gained interest for its potential to provide high data capacity in free-space optical (FSO) communications. Here, we experimentally demonstrate wavelength-division-multiplexing (WDM) and mode-division-multiplexing (MDM) in a ~0.5 m mid-IR FSO link. We multiplex three ~3.4 μm wavelengths (3.396 μm, 3.397 μm, and 3.398 μm) on a single polarization, with each wavelength carrying two orbital-angular-momentum (OAM) beams. As each beam carries 50-Gbit/s quadrature-phase-shift-keying data, a total capacity of 300 Gbit/s is achieved. The WDM channels are generated and detected in the near-IR (C-band). They are converted to mid-IR and converted back to C-band through the difference frequency generation nonlinear processes. We estimate that the system penalties at a bit error rate near the forward error correction threshold include the following: (i) the wavelength conversions induce ~2 dB optical signal-to-noise ratio (OSNR) penalty, (ii) WDM induces ~1 dB OSNR penalty, and (iii) MDM induces ~0.5 dB OSNR penalty. These results show the potential of using multiplexing to achieve a ~30X increase in data capacity for a mid-IR FSO link.
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