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Dive into the research topics where Jonas Webjorn is active.

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Featured researches published by Jonas Webjorn.


IEEE Journal of Selected Topics in Quantum Electronics | 2005

Large-scale photonic integrated circuits

R. Nagarajan; Charles H. Joyner; R. Schneider; Jeffrey Bostak; T. Butrie; Andrew Dentai; Vincent G. Dominic; P. Evans; Masaki Kato; M. Kauffman; Damien Lambert; S.K. Mathis; Atul Mathur; R.H. Miles; Matthew L. Mitchell; Mark J. Missey; Sanjeev Murthy; Alan C. Nilsson; Frank H. Peters; S.C. Pennypacker; J. Pleumeekers; Randal A. Salvatore; R. Schlenker; Robert B. Taylor; Huan-Shang Tsai; M.F. Van Leeuwen; Jonas Webjorn; Mehrdad Ziari; Drew D. Perkins; J. Singh

We present an overview of Infineras current generation of 100 Gb/s transmitter and receiver PICs as well as results from the next-generation 500 Gb/s PM-QPSK PICs.


lasers and electro optics society meeting | 2005

Large-scale DWDM photonic integrated circuits: a manufacturable and scalable integration platform

Charles H. Joyner; J. Pleumeekers; Atul Mathur; P. Evans; Damien Lambert; Sanjeev Murthy; S.K. Mathis; Frank H. Peters; J. Baeck; Mark J. Missey; Andrew Dentai; Randal A. Salvatore; R. Schneider; Mehrdad Ziari; Masaki Kato; R. Nagarajan; Jeffrey Bostak; T. Butrie; Vincent G. Dominic; M. Kauffman; R.H. Miles; Matthew L. Mitchell; Alan C. Nilsson; S.C. Pennypacker; R. Schlenker; Robert B. Taylor; Huan-Shang Tsai; M.F. Van Leeuwen; Jonas Webjorn; Drew D. Perkins

Commercial scaling of electronic integrated circuits has proceeded at a fast pace once the initial hurdle to integration was overcome. Recently, it has been shown that record active and passive optical device counts, exceeding 50 discrete components, can be incorporated onto a single monolithic 100 Gbps DWDM transmitter PIC InP chip. We will investigate key production metrics for this large-scale PIC commercial device as well as other analogs to other III-V semiconductor commercial devices. Using the yield management tools pioneered by silicon based electronics, we will present data supporting their scalability and the manufacturability of these large-scale PICs


lasers and electro-optics society meeting | 2008

Photonic integrated circuits for phase modulation formats

Scott Corzine; P. Evans; Masaki Kato; M. Fisher; Maura Raburn; Andrew Dentai; Ilya Lyubomirsky; Alan C. Nilsson; Jeffrey T. Rahn; R. Nagarajan; Babak Behnia; Jeffrey Bostak; J. Stewart; D. Christini; Mark J. Missey; Vikrant Lal; H. Dinh; Arnold Chen; J. Thomson; W. Williams; P. Chavarkar; Steven Nguyen; Damien Lambert; S. Agashe; Augi Spannagel; Jon Rossi; P. Liu; Jonas Webjorn; T. Butrie; M. Reffle

We will review the latest performance metrics for components enabling communication networks based on phase modulation formats. For spectral efficiency, reduced complexity, reliability, and power consumption; monolithic integration on InP is clearly the superior path.


optical fiber communication conference | 2006

Volume manufacturing and deployment of large-scale photonic integrated circuits

F. Kish; D. Welch; J. Pleumeekers; Atul Mathur; P. Evans; Ranjani Muthiah; Sanjeev Murthy; M. Kauffman; Paul N. Freeman; R. Schneider; Mehrdad Ziari; C. Joyner; Jeffrey Bostak; T. Butrie; Andrew Dentai; Vincent G. Dominic; Sheila Hurtt; Masaki Kato; Damien Lambert; R.H. Miles; Matthew L. Mitchell; Mark J. Missey; R. Nagarajan; Frank H. Peters; S.C. Pennypacker; Randal A. Salvatore; R. Schlenker; Robert B. Taylor; Huan-Shang Tsai; M.F. Van Leeuwen

Manufacturing statistics are presented for 100 Gb/s transmitter and receiver large-scale photonic integrated circuits (LS-PICs). The data demonstrate the feasibility of the cost-effective deployment and volume manufacturing of these devices


conference on lasers and electro-optics | 2005

100 Gb/s (10/spl times/10 Gb/s) DWDM photonic integrated circuit transmitters and receivers

F. Kish; R. Nagarajan; C. Joyner; R. Schneider; Jeffrey Bostak; T. Butrie; Andrew Dentai; Vincent G. Dominic; P. Evans; Masaki Kato; M. Kauffman; Damien Lambert; S.K. Mathis; Atul Mathur; R.H. Miles; Matthew L. Mitchell; Mark J. Missey; Sanjeev Murthy; Alan C. Nilsson; Frank H. Peters; S.C. Pennypacker; J. Pleumeekers; Randal A. Salvatore; R. Schlenker; Robert B. Taylor; Huan-Shang Tsai; M.F. Van Leeuwen; Jonas Webjorn; Mehrdad Ziari; Steve Grubb

100 Gb/s transmitters and receivers are realized through the monolithic integration of over 50 discrete functions onto a single InP chip. The modules are capable of simultaneously transmitting and receiving 10 DWDM wavelengths at >10 Gb/s.


optical fiber communication conference | 2007

Ultra High Capacity WDM Photonic Integrated Circuits

F.A. Kish; R. Nagarajan; Masaki Kato; R. Schneider; J. Pleumeekers; P. Evans; Sheila Hurtt; Andrew Dentai; Damien Lambert; Mark J. Missey; Jonas Webjorn; Vincent G. Dominic; M. Kauffman; Atul Mathur; Randal A. Salvatore; Mehrdad Ziari; Ranjani Muthiah; Sanjeev Murthy; C. Joyner; Jeffrey Bostak; T. Butrie; R.H. Miles; Matthew L. Mitchell; S.C. Pennypacker; R. Schlenker; Robert B. Taylor; Huan-Shang Tsai; M.F. Van Leeuwen; Steve Grubb; M. Reffle

Design and performance of large scale, dense wavelength division multiplexed InP transmitter and receiver photonic integrated circuits (PICs) are reviewed. The PICs are capable of transmitting and receiving up to 40 wavelengths at data rates up to 40 Gbit/s per channel.


optical fiber communication conference | 2005

400 Gb/s (10-channel /spl times/ 40 Gb/s) DWDM photonic integrated circuits

R. Nagarajan; Masaki Kato; T. Desikan; Vincent G. Dominic; M. Kauffman; Sanjeev Murthy; Huan-Shang Tsai; C. Joyner; R. Schneider; Andrew Dentai; P. Evans; Damien Lambert; Sheila K. Mathis; Atul Mathur; Matthew L. Mitchell; Mark J. Missey; Alan C. Nilsson; Frank H. Peters; J. Pleumeekers; Randal A. Salvatore; Robert B. Taylor; M.F. Van Leeuwen; Jonas Webjorn; Mehrdad Ziari; S.G. Brubb; Drew D. Perkins; F.A. Kish; D. Welch

A 10-channel transmitter and receiver DWDM photonic integrated circuit pair is demonstrated that is capable of transmitting and receiving data at 40 Gb/s per channel for an aggregate data communication rate of 400 Gb/s.


Archive | 2002

Transmitter photonic integrated circuits (txpic) and optical transport networks employing txpics

David F. Welch; Vincent G. Dominic; Fred A. Kish; Mark J. Missey; Radhakrishnan Nagarajan; Atul Mathur; Frank H. Peters; Robert B. Taylor; Matthew L. Mitchell; Alan C. Nilsson; Stephen G. Grubb; Richard P. Schneider; Charles H. Joyner; Jonas Webjorn; Drew D. Perkins


Archive | 2002

Transmitter photonic integrated circuit (TxPIC) chip architectures and drive systems and wavelength stabilization for TxPICs

Fred A. Kish; Charles H. Joyner; David F. Welch; Jonas Webjorn; Robert B. Taylor; Alan C. Nilsson


IEEE Journal of Selected Topics in Quantum Electronics | 2007

Large-Scale InP Photonic Integrated Circuits: Enabling Efficient Scaling of Optical Transport Networks

D. Welch; F. Kish; S. Melle; R. Nagarajan; Masaki Kato; C. Joyner; J. Pleumeekers; R. Schneider; J. Back; Andrew Dentai; Vincent G. Dominic; P. Evans; M. Kauffman; Damien Lambert; Sheila Hurtt; Atul Mathur; Matthew L. Mitchell; Mark J. Missey; Sanjeev Murthy; Alan C. Nilsson; Randal A. Salvatore; M.F. Van Leeuwen; Jonas Webjorn; Mehrdad Ziari; Steve Grubb; Drew D. Perkins; M. Reffle; D. Mehuys

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Frank H. Peters

Tyndall National Institute

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