Title :
Real-time detection of femtosecond optical pulse sequences via time-to-space conversion in the lightwave communications band
Author :
Chung, Jung-Ho ; Weiner, Andrew M.
Author_Institution :
Sch. of Electr. & Comput. Eng., Purdue Univ., West Lafayette, IN, USA
Abstract :
A spectral nonlinear optics time-to-space converter operating in the lightwave communications band is reported for the first time. We demonstrate serial-to-parallel conversion of short frames of femtosecond pulses, for the first time operating at a conversion efficiency level allowing direct electronic readout at a conversion rate of hundreds of megaframes/s in real time, without signal averaging and with good signal-to-noise ratio. The results demonstrate that applications such as real-time measurements of ultrafast optical data sequences and header recognition in ultrafast optical time-division-multiplexed (OTDM) packet networks are approaching feasibility. Moreover, we analyze tradeoffs between optical powers and data rates from a system perspective, which allows us to assess the challenges for scaling to parallel demultiplexing of bit-interleaved OTDM transmission systems.
Keywords :
demultiplexing; laser variables measurement; optical communication equipment; optical fibre communication; optical harmonic generation; optical modulation; optical parametric oscillators; optical pulse generation; optical pulse shaping; time division multiplexing; wavelength division multiplexing; OTDM transmission system; conversion efficiency level; demultiplexing; direct electronic readout; femtosecond optical pulse; lightwave communications band; real-time detection; serial-to-parallel conversion; signal-to-noise ratio; time-to-space conversion; ultrafast optical time-division-multiplexing; Fiber nonlinear optics; Nonlinear optics; Optical detectors; Optical interferometry; Optical mixing; Optical pulse generation; Optical pulses; Optical receivers; Optical signal processing; Ultrafast optics;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2003.820042