The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. ex. Some numerals are expressed as "XNUMX".
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The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. Copyrights notice
Este artigo relata o processamento diferencial de sinais ópticos baseado na conversão de tempo-espaço usando uma rede de guia de ondas de alta resolução (AWG) e um filtro espacial em um comprimento de onda de 1.55 µm. Esclarecemos as vantagens do dispositivo AWG e mostramos onde ele é aplicável. Para reduzir as perdas no filtro espacial, propomos um novo filtro somente de fase que funciona como um filtro diferencial. A diferença entre o filtro diferencial exato e o filtro somente de fase proposto é calculada teoricamente. Confirmamos experimentalmente que o pulso óptico pode ser diferenciado pelo filtro proposto. Para aplicação de processamento diferencial, também propusemos uma conversão de modulação de fase para modulação de amplitude (PM-AM) e demonstramos a conversão PM-AM em sinais de 10 Gbit/s usando um formato PSK-non-return-to-zero (NRZ).
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Hirokazu TAKENOUCHI, Hiroyuki TSUDA, Chikara AMANO, Takashi GOH, Katsunari OKAMOTO, Takashi KUROKAWA, "Differential Processing Using an Arrayed-Waveguide Grating" in IEICE TRANSACTIONS on Electronics,
vol. E82-C, no. 8, pp. 1518-1524, August 1999, doi: .
Abstract: This paper reports on time-space conversion-based differential processing of optical signals using a high-resolution arrayed-waveguide grating (AWG) and a spatial filter at a wavelength of 1.55 µm. We clarify the advantages of the AWG device and show where it is applicable. In order to reduce loss at the spatial filter, we propose a new phase-only filter that functions as a differential filter. The difference between the exact differential filter and the proposed phase-only filter is calculated theoretically. We confirm experimentally that the optical pulse can be differentiated by the proposed filter. For application of differential processing, we also proposed a phase modulation to amplitude modulation (PM-AM) conversion and demonstrated the PM-AM conversion at 10 Gbit/s signals using a PSK-non-return-to-zero (NRZ) format.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/e82-c_8_1518/_p
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@ARTICLE{e82-c_8_1518,
author={Hirokazu TAKENOUCHI, Hiroyuki TSUDA, Chikara AMANO, Takashi GOH, Katsunari OKAMOTO, Takashi KUROKAWA, },
journal={IEICE TRANSACTIONS on Electronics},
title={Differential Processing Using an Arrayed-Waveguide Grating},
year={1999},
volume={E82-C},
number={8},
pages={1518-1524},
abstract={This paper reports on time-space conversion-based differential processing of optical signals using a high-resolution arrayed-waveguide grating (AWG) and a spatial filter at a wavelength of 1.55 µm. We clarify the advantages of the AWG device and show where it is applicable. In order to reduce loss at the spatial filter, we propose a new phase-only filter that functions as a differential filter. The difference between the exact differential filter and the proposed phase-only filter is calculated theoretically. We confirm experimentally that the optical pulse can be differentiated by the proposed filter. For application of differential processing, we also proposed a phase modulation to amplitude modulation (PM-AM) conversion and demonstrated the PM-AM conversion at 10 Gbit/s signals using a PSK-non-return-to-zero (NRZ) format.},
keywords={},
doi={},
ISSN={},
month={August},}
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TY - JOUR
TI - Differential Processing Using an Arrayed-Waveguide Grating
T2 - IEICE TRANSACTIONS on Electronics
SP - 1518
EP - 1524
AU - Hirokazu TAKENOUCHI
AU - Hiroyuki TSUDA
AU - Chikara AMANO
AU - Takashi GOH
AU - Katsunari OKAMOTO
AU - Takashi KUROKAWA
PY - 1999
DO -
JO - IEICE TRANSACTIONS on Electronics
SN -
VL - E82-C
IS - 8
JA - IEICE TRANSACTIONS on Electronics
Y1 - August 1999
AB - This paper reports on time-space conversion-based differential processing of optical signals using a high-resolution arrayed-waveguide grating (AWG) and a spatial filter at a wavelength of 1.55 µm. We clarify the advantages of the AWG device and show where it is applicable. In order to reduce loss at the spatial filter, we propose a new phase-only filter that functions as a differential filter. The difference between the exact differential filter and the proposed phase-only filter is calculated theoretically. We confirm experimentally that the optical pulse can be differentiated by the proposed filter. For application of differential processing, we also proposed a phase modulation to amplitude modulation (PM-AM) conversion and demonstrated the PM-AM conversion at 10 Gbit/s signals using a PSK-non-return-to-zero (NRZ) format.
ER -