Modulation-format agile, reconfigurable Tb/s transmitter based on optical arbitrary waveform generation
Author(s) -
David J. Geisler,
Nicolas K. Fontaine,
Tingting He,
Ryan P. Scott,
Loukas Paraschis,
J.P. Heritage,
S. J. Ben Yoo
Publication year - 2009
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.17.015911
Subject(s) - quadrature amplitude modulation , waveform , computer science , phase shift keying , pulse shaping , pulse amplitude modulation , optics , modulation (music) , subcarrier , electronic engineering , phase modulation , arbitrary waveform generator , transmitter , physics , telecommunications , bit error rate , phase noise , channel (broadcasting) , laser , orthogonal frequency division multiplexing , pulse (music) , engineering , acoustics , radar , detector
This paper presents the concept of an optical transmitter based on optical arbitrary waveform generation (OAWG) capable of synthesizing Tb/s optical signals of arbitrary modulation format. Experimental and theoretical demonstrations in this paper include generation of data packet waveforms focusing on (a) achieving high spectral efficiencies in quadrature phase-shift keying (QPSK) and 16 quadrature amplitude modulation (16QAM) modulation formats, (b) generation of complex data waveform packets used for optical-label switching (OLS) consisting of a data payload and label on a carrier and subcarrier, and (c) repeatability and accuracy of duobinary (DB) data packet waveforms with BER measurements. These initial demonstrations are based on static OAWG, or line-by-line pulse shaping, to generate repeated waveforms of arbitrary shape. In addition to experimental and theoretical demonstrations of static OAWG, simulated results show dynamic OAWG, which involves encoding continuous data streams of arbitrary symbol sequence on data packet waveforms of arbitrary length.
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