300 GHz OOK Transmitter Integrated in Advanced Silicon Photonics Technology and Achieving 20 Gb/s. Lacombe, E., Belem-Goncalves, C., Luxey, C., Gianesello, F., Durand, C., Gloria, D., & Ducournau, G. In 2018 IEEE Radio Frequency Integrated Circuits Symposium (RFIC), pages 356–359, June, 2018. doi abstract bibtex In this paper, a 300 GHz 20 Gb/s On-Off Keying (OOK) transmitter is demonstrated in advanced Silicon-Photonics process. An integrated Silicon-Germanium photodiode is optically excited by the beatnote of two tunable lasers in order to up-convert data signals from baseband to 300 GHz. Using a receiver based on direct detection in III-V Schottky diode, measured Bit Error Rates (BER) below the value of 1.10-9were achieved at 20 Gb/s in real time, and a real-time BER below the Forward Error Correction (FEC) was successfully measured at 25 Gb/s.
@inproceedings{lacombe_300_2018,
title = {300 {GHz} {OOK} {Transmitter} {Integrated} in {Advanced} {Silicon} {Photonics} {Technology} and {Achieving} 20 {Gb}/s},
doi = {10.1109/RFIC.2018.8428983},
abstract = {In this paper, a 300 GHz 20 Gb/s On-Off Keying (OOK) transmitter is demonstrated in advanced Silicon-Photonics process. An integrated Silicon-Germanium photodiode is optically excited by the beatnote of two tunable lasers in order to up-convert data signals from baseband to 300 GHz. Using a receiver based on direct detection in III-V Schottky diode, measured Bit Error Rates (BER) below the value of 1.10-9were achieved at 20 Gb/s in real time, and a real-time BER below the Forward Error Correction (FEC) was successfully measured at 25 Gb/s.},
booktitle = {2018 {IEEE} {Radio} {Frequency} {Integrated} {Circuits} {Symposium} ({RFIC})},
author = {Lacombe, E. and Belem-Goncalves, C. and Luxey, C. and Gianesello, F. and Durand, C. and Gloria, D. and Ducournau, G.},
month = jun,
year = {2018},
keywords = {Optical transmitters, Optical amplifiers, Modulation, Optical fibers, Wireless communication, amplitude shift keying, error statistics, photodiodes, photodiode, Photonics, advanced Silicon Photonics technology, frequency 300.0 GHz, Ge-Si alloys, integrated Silicon-Germanium photodiode, OOK transmitter, radio transmitters, Schottky diodes, Silicon-photonics, THz, tunable lasers, wireless data-communication},
pages = {356--359},
file = {IEEE Xplore Abstract Record:D\:\\Zotero\\storage\\JI63GI6U\\8428983.html:text/html;IEEE Xplore Full Text PDF:D\:\\Zotero\\storage\\8RRHDAWP\\Lacombe et al. - 2018 - 300 GHz OOK Transmitter Integrated in Advanced Sil.pdf:application/pdf}
}
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Using a receiver based on direct detection in III-V Schottky diode, measured Bit Error Rates (BER) below the value of 1.10-9were achieved at 20 Gb/s in real time, and a real-time BER below the Forward Error Correction (FEC) was successfully measured at 25 Gb/s.","booktitle":"2018 IEEE Radio Frequency Integrated Circuits Symposium (RFIC)","author":[{"propositions":[],"lastnames":["Lacombe"],"firstnames":["E."],"suffixes":[]},{"propositions":[],"lastnames":["Belem-Goncalves"],"firstnames":["C."],"suffixes":[]},{"propositions":[],"lastnames":["Luxey"],"firstnames":["C."],"suffixes":[]},{"propositions":[],"lastnames":["Gianesello"],"firstnames":["F."],"suffixes":[]},{"propositions":[],"lastnames":["Durand"],"firstnames":["C."],"suffixes":[]},{"propositions":[],"lastnames":["Gloria"],"firstnames":["D."],"suffixes":[]},{"propositions":[],"lastnames":["Ducournau"],"firstnames":["G."],"suffixes":[]}],"month":"June","year":"2018","keywords":"Optical transmitters, Optical amplifiers, Modulation, Optical fibers, Wireless communication, amplitude shift keying, error statistics, photodiodes, photodiode, Photonics, advanced Silicon Photonics technology, frequency 300.0 GHz, Ge-Si alloys, integrated Silicon-Germanium photodiode, OOK transmitter, radio transmitters, Schottky diodes, Silicon-photonics, THz, tunable lasers, wireless data-communication","pages":"356–359","file":"IEEE Xplore Abstract Record:D\\:\\\\Zotero\\\\storage\\\\JI63GI6U\\\\8428983.html:text/html;IEEE Xplore Full Text PDF:D\\:\\\\Zotero\\\\storage\\\\8RRHDAWP\\\\Lacombe et al. - 2018 - 300 GHz OOK Transmitter Integrated in Advanced Sil.pdf:application/pdf","bibtex":"@inproceedings{lacombe_300_2018,\n\ttitle = {300 {GHz} {OOK} {Transmitter} {Integrated} in {Advanced} {Silicon} {Photonics} {Technology} and {Achieving} 20 {Gb}/s},\n\tdoi = {10.1109/RFIC.2018.8428983},\n\tabstract = {In this paper, a 300 GHz 20 Gb/s On-Off Keying (OOK) transmitter is demonstrated in advanced Silicon-Photonics process. An integrated Silicon-Germanium photodiode is optically excited by the beatnote of two tunable lasers in order to up-convert data signals from baseband to 300 GHz. 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