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100-GHz FrOFDM-Based Serial-to-Parallel Converter and QPSK Modulation Format Applicability

A novel fractional orthogonal frequency division multiplexing (FrOFDM)-based 100-GHz serial-to-parallel (S-P) converter is experimentally demonstrated. A 10-GHz sinusoidally modulated Nyquist-optical time division multiplexing serial signal, with 100-GHz repetition rate, is optically restored after...

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Published in:IEEE journal of selected topics in quantum electronics 2021-03, Vol.27 (2), p.1-6
Main Authors: Yamasaki, Yu, Nakamichi, Takuya, Kaihori, Yuta, Cincotti, Gabriella, Konishi, Tsuyoshi
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cited_by cdi_FETCH-LOGICAL-c431t-9c7ceae737daaf8d5d7a6561c2c96c38d544dac423ba7a797c27053194f41ec3
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description A novel fractional orthogonal frequency division multiplexing (FrOFDM)-based 100-GHz serial-to-parallel (S-P) converter is experimentally demonstrated. A 10-GHz sinusoidally modulated Nyquist-optical time division multiplexing serial signal, with 100-GHz repetition rate, is optically restored after S-P conversion. In addition, the performances for quadrature phase shift keying (QPSK) modulation have been numerically evaluated. Also in this case, the error vector magnitude values and the constellation map of 100-GHz QPSK serial signals demonstrate a successful S-P conversion.
doi_str_mv 10.1109/JSTQE.2020.3034918
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source IEEE Electronic Library (IEL) Journals
subjects Adaptive optics
Analog to digital converter
Constellations
Conversion
Converters
Modulation
Nyquist pulse
OFDM
Optical modulation
optical sampling
optical serial-to-parallel converter
Orthogonal Frequency Division Multiplexing
Quadrature phase shift keying
Time division multiplexing
title 100-GHz FrOFDM-Based Serial-to-Parallel Converter and QPSK Modulation Format Applicability
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