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Four-channel coarse WDM for inter- and intra-satellite optical communications
Authors:Lanlan Gu   Feng Zhao   Zhong Shi   Jian Liu  Ray T. Chen  
Affiliation:aMicroelectronics Research Center, Department of Electrical and Computer Engineering, The University of Texas at Austin, J J Pickle Research Campus,10100 Burnet Road, Austin, TX 78758, USA;bPolarOnyx, Inc., Sunnyvale, CA 94089, USA
Abstract:A polymer volume grating-based four-channel coarse wavelength division multiplexer (WDM) for inter- and intra-satellite optical communication application is reported for the first time. This compact four-channel WDM device working at 0.83, 1.06, 1.34 and 1.55 μm is designed to build a complete optical link between two satellites, where wavelengths of 0.83 and 1.55 μm are used for data stream channels, 1.06 and 1.34 μm are used for inter- and intra-satellite connection. It is for the first time reported that a WDM device can cover such a large wavelength range in a single substrate. For transverse electric (TE) wave, the channel efficiencies at 0.83, 1.06, 1.34 and 1.55 μm are 55%, 40%, 35% and 45%, respectively. Channel efficiencies for transverse magnetic (TM) waves are 20% lower than those of TE waves on average. Wavelength shifts due to Doppler effect, temperature variations and radiation effects in space can be adequately accommodated.
Keywords:Wavelength division multiplexing   Satellite communication   Holographic gratings
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