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A Monolithic O-Band Coherent Optical Receiver for Energy-Efficient Links
A 1310-nm (O-band) coherent optical Link is demonstrated for short-range optical interconnects that operate to 56-GBd symbol rate (SR) (112 Gbps) with FEC-acceptable BER. The coherent optical receiver (CORX) leverages a monolithic 45-nm CMOS SOI photonic-enabled process to realize an energy-efficien...
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Published in: | IEEE journal of solid-state circuits 2024-05, Vol.59 (5), p.1409-1420 |
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creator | Movaghar, Ghazal Arrunategui, Viviana Liu, Junqian Maharry, Aaron Misak, Stephen Du, Xinhong Schow, Clint L. Buckwalter, James F. |
description | A 1310-nm (O-band) coherent optical Link is demonstrated for short-range optical interconnects that operate to 56-GBd symbol rate (SR) (112 Gbps) with FEC-acceptable BER. The coherent optical receiver (CORX) leverages a monolithic 45-nm CMOS SOI photonic-enabled process to realize an energy-efficient quadrature phase shift keying (QPSK) demodulation. Co-design of the optical and electronic circuit elements supports high-speed operation and low-power consumption. The coherent link is demonstrated with an optical transmitter photonic IC (PIC) fabricated in silicon photonic (SiPh) process with laser diodes wirebonded to a 90-nm SiGe driver electronic RFIC. The transmitter operates at 5.9-pJ/bit energy efficiency (EE) while the receiver achieves 0.73 pJ/bit and, to our knowledge, is the best EE reported for a coherent optical receiver. |
doi_str_mv | 10.1109/JSSC.2023.3339494 |
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subjects | Circuit design CMOS SOI Co-design Coherence coherent optical communication Demodulation Electronic circuits energy efficiency (EE) Optical amplifiers Optical feedback Optical fiber communication Optical interconnects Optical modulation optical receiver Optical receivers Optical transmitters Photonics Power consumption Power demand Quadrature phase shift keying Semiconductor lasers silicon photonic (SiPh) |
title | A Monolithic O-Band Coherent Optical Receiver for Energy-Efficient Links |
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