Title :
Multi-channel race-track shaped resonators for photonic analog to digital converter
Author :
Khashei, Hamidreza ; Kaatuzian, Hassan
Author_Institution :
Dept. of Electr. Eng., Amirkabir Univ. of Technol., Tehran, Iran
Abstract :
Progress in developing high speed ADC´s occurs rather slowly - at a resolution increase of 1.8 bits per decade. This slow progress is mostly caused by the inherent jitter in electronic sampling - currently on the order of 250 femtoseconds in the most advanced CMOS circuitry. Advances in femtosecond lasers and laser stabilization have led to the development of sources of ultrafast optical pulse trains that show jitter on the level of a few femtoseconds over the time spans of typical sampling windows and can be made even smaller. We discuss and demonstrate strategies and an important device that enables the implementation of photonic ADC systems with emerging electronic-photonic integrated circuits based on silicon photonics. The microring resonators are designed to have 20nm Free-Spectral Range (FSR) and 25 GHz bandwidth, allowing for a channel spacing of 80 GHz with less than 30 dB of crosstalk and ~ 350×350μm2 size of race-track resonator that to the best of our knowledge, this is the smallest size of 20 channel second order filter bank for wavelength De-multiplexer in a silicon chip.
Keywords :
analogue-digital conversion; high-speed optical techniques; integrated optics; micromechanical resonators; CMOS circuitry; bandwidth 25 GHz; electronic sampling; electronic-photonic integrated circuits; femtosecond lasers; free-spectral range; frequency 80 GHz; inherent jitter; laser stabilization; microring resonators; multichannel race-track shaped resonators; photonic ADC systems; photonic analog to digital converter; sampling windows; second order filter bank; silicon chip; silicon photonics; size 20 nm; ultrafast optical pulse trains; wavelength demultiplexer; Dispersion; Filter banks; Indexes; Optical filters; Optical pulses; Optical resonators; Photonics; Electronic photonic integrated circuits; Race-Track resonator; high index contrast; optical analog-to-digital conversion; optical sampling; silicon photonics;
Conference_Titel :
Electrical Engineering (ICEE), 2014 22nd Iranian Conference on
Conference_Location :
Tehran
DOI :
10.1109/IranianCEE.2014.6999587