Title :
32 channel, 25 GHz InP integrated pulse shaper with SOA amplitude control
Author :
A. J. Metcalf;D. E. Leaird;J. Jaramillo;V. Lal;A. Hosseini;F. Kish;A M. Weiner
Author_Institution :
Purdue University, School of Electrical and Computer Engineering, West Lafayette, IN 47907-1285, United States
Abstract :
Over the past few decades optical pulse shaping has become an integral part of numerous photonic systems, impacting applications from optical communications to RF-photonic filtering [1]. In a parallel line, driven primarily by the need for broadband mass transmission of information, the technology behind photonic integration on the InP platform has continued to advance at a remarkable rate [2]. Leveraging these new fabrication methods researchers have developed an ever-increasing on-chip photonic tool set, which in turn is fueling a push for the migration of photonic solutions from bulk devices to a more marketable and scalable integrated platform. One of the most powerful tools one can envision is a fully functioning integrated pulse shaper. Particularly attractive is a shaper capable of working in the `line-by-line´ regime where it has arbitrary amplitude and phase control over individual lines of an optical frequency comb. In this regime, user-defined complex spectral shapes and arbitrary temporal waveforms can be synthesized on demand, thereby facilitating applications like optical- and RF- arbitrary waveform generation [3], agile RF-photonic filtering [4], and coherent communications. In this contribution we present a 32 channel InP Arrayed Waveguide Grating Pulse Shaper (AWGPS) exhibiting line-by-line amplitude control at 25 GHz channel spacing.
Keywords :
"Indium phosphide","III-V semiconductor materials","Semiconductor optical amplifiers","Photonics","Universal Serial Bus","Optical polarization","Optical pulses"
Conference_Titel :
Photonics Conference (IPC), 2015
DOI :
10.1109/IPCon.2015.7323650