Large-Scale Photonic Integrated Circuits Used for Ultra Long Haul Transmission
Commercially available monolithic Photonic Integrated Circuits (PIC) capable of transmitting at a rate of 100 Gbps have been scaled to incorporate a record number of discrete components exceeding a count of 280 per PIC pair. Recently, it has been demonstrated that these highly reliable devices are n...
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creator | Lambert, Damien J.H. Mathur, Atul Evans, Peter W. Murthy, Sanjeev Mathis, Sheila K. Baeck, Johan Missey, Mark J. Dentai, Andrew G. Salvatore, Randal A. Schneider, Richard P. Ziari, Mehrdad Joyner, Charles H. Mertz, Pierre Laliberte, Mark Bostak, Jeffrey S. Butrie, Timothy Dominic, Vincent G. Kauffman, Mike Miles, Richard H. Mitchell, Matthew L. Nilsson, Alan C. Pennypacker, Stephen C. Rossi, Jon Schlenker, Rory Tsai, Huan-Shang Webjorn, Jonas Reffle, Michael Mehuys, David G. Welch, David F. Kish, Fred A. Nagarajan, Radhakrishnan Grubb, Steve Van Leeuwen, Michael F. Kato, Masaki Pleumeekers, Jacco L. |
description | Commercially available monolithic Photonic Integrated Circuits (PIC) capable of transmitting at a rate of 100 Gbps have been scaled to incorporate a record number of discrete components exceeding a count of 280 per PIC pair. Recently, it has been demonstrated that these highly reliable devices are not reach-limited and are inherently capable of Ultra Long-Haul (ULH) transmission. We will present results showing that 800 Gbps transport with high polarization mode distortion. |
doi_str_mv | 10.1109/LEOS.2007.4382639 |
format | Conference Proceeding |
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Recently, it has been demonstrated that these highly reliable devices are not reach-limited and are inherently capable of Ultra Long-Haul (ULH) transmission. 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Recently, it has been demonstrated that these highly reliable devices are not reach-limited and are inherently capable of Ultra Long-Haul (ULH) transmission. We will present results showing that 800 Gbps transport with high polarization mode distortion.</description><subject>Distributed feedback devices</subject><subject>Integrated optics</subject><subject>Large scale integration</subject><subject>Manufacturing</subject><subject>Optical arrays</subject><subject>Optical distortion</subject><subject>Optical fiber networks</subject><subject>Optical transmitters</subject><subject>Photonic integrated circuits</subject><subject>Telecommunication network reliability</subject><issn>1092-8081</issn><issn>2766-1733</issn><isbn>1424409241</isbn><isbn>9781424409242</isbn><isbn>9781424409259</isbn><isbn>142440925X</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2007</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNo1kMtqAjEYhdMbVK0PULrJC4z98yeTy7KIrcJQC-paMpnEpowzJRkXffsKtavDx4EPziHkkcGMMTDP1WK9mSGAmgmuUXJzRaZGaSZQCDBYmmsyQiVlwRTnN2T8Xwh2S0ZnARYaNLsn45y_ABBQqRF5r2w6-GLjbOvpx2c_9F10dNUN_pDs4Bs6j8md4pDpLp8p9Inu2iFZWvXdgS7tqaXbZLt8jDnHvnsgd8G22U8vOSG718V2viyq9dtq_lIVkalyKEp0-jxAGhmCwgDAnUIPTR3AMSudqWVjQWHpmRFc1k6xIJq6BjSaa634hDz9eaP3fv-d4tGmn_3lF_4LBQhR1w</recordid><startdate>200710</startdate><enddate>200710</enddate><creator>Lambert, Damien J.H.</creator><creator>Mathur, Atul</creator><creator>Evans, Peter W.</creator><creator>Murthy, Sanjeev</creator><creator>Mathis, Sheila K.</creator><creator>Baeck, Johan</creator><creator>Missey, 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Jacco L.</creator><general>IEEE</general><scope>6IE</scope><scope>6IH</scope><scope>CBEJK</scope><scope>RIE</scope><scope>RIO</scope></search><sort><creationdate>200710</creationdate><title>Large-Scale Photonic Integrated Circuits Used for Ultra Long Haul Transmission</title><author>Lambert, Damien J.H. ; Mathur, Atul ; Evans, Peter W. ; Murthy, Sanjeev ; Mathis, Sheila K. ; Baeck, Johan ; Missey, Mark J. ; Dentai, Andrew G. ; Salvatore, Randal A. ; Schneider, Richard P. ; Ziari, Mehrdad ; Joyner, Charles H. ; Mertz, Pierre ; Laliberte, Mark ; Bostak, Jeffrey S. ; Butrie, Timothy ; Dominic, Vincent G. ; Kauffman, Mike ; Miles, Richard H. ; Mitchell, Matthew L. ; Nilsson, Alan C. ; Pennypacker, Stephen C. ; Rossi, Jon ; Schlenker, Rory ; Tsai, Huan-Shang ; Webjorn, Jonas ; Reffle, Michael ; Mehuys, David G. ; Welch, David F. ; Kish, Fred A. ; Nagarajan, Radhakrishnan ; Grubb, Steve ; Van Leeuwen, Michael F. ; Kato, Masaki ; Pleumeekers, Jacco 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Transmission</atitle><btitle>LEOS 2007 - IEEE Lasers and Electro-Optics Society Annual Meeting Conference Proceedings</btitle><stitle>LEOS</stitle><date>2007-10</date><risdate>2007</risdate><spage>778</spage><epage>779</epage><pages>778-779</pages><issn>1092-8081</issn><eissn>2766-1733</eissn><isbn>1424409241</isbn><isbn>9781424409242</isbn><eisbn>9781424409259</eisbn><eisbn>142440925X</eisbn><abstract>Commercially available monolithic Photonic Integrated Circuits (PIC) capable of transmitting at a rate of 100 Gbps have been scaled to incorporate a record number of discrete components exceeding a count of 280 per PIC pair. Recently, it has been demonstrated that these highly reliable devices are not reach-limited and are inherently capable of Ultra Long-Haul (ULH) transmission. We will present results showing that 800 Gbps transport with high polarization mode distortion.</abstract><pub>IEEE</pub><doi>10.1109/LEOS.2007.4382639</doi><tpages>2</tpages></addata></record> |
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language | eng |
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source | IEEE Electronic Library (IEL) Conference Proceedings |
subjects | Distributed feedback devices Integrated optics Large scale integration Manufacturing Optical arrays Optical distortion Optical fiber networks Optical transmitters Photonic integrated circuits Telecommunication network reliability |
title | Large-Scale Photonic Integrated Circuits Used for Ultra Long Haul Transmission |
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