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Autonomous on-chip interferometry for reconfigurable optical waveform generation

  • Bennet FISCHER
  • , Mario CHEMNITZ*
  • , Benjamin MACLELLAN
  • , Piotr ROZTOCKI
  • , Robin HELSTEN
  • , Benjamin WETZEL
  • , Brent E. LITTLE
  • , Sai T. CHU
  • , David J. MOSS
  • , Jose AZANA
  • , Roberto MORANDOTTI
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Abstract

The generation of user-defined optical temporal waveforms with picosecond resolution is an essential task for many applications, ranging from telecommunications to laser engineering. Realizing this functionality in an on-chip reconfigurable platform remains a significant challenge. Towards this goal, autonomous optimization methods are fundamental to counter fabrication imperfections and environmental variations, as well as to enable a wider range of accessible waveform shapes and durations. In this work, we introduce and demonstrate a self-adjusting on-chip optical pulse-shaper based on the concept of temporal coherence synthesis. The scheme enables on-the-fly reconfigurability of output optical waveforms by using an all-optical sampling technique in combination with an evolutionary optimization algorithm. We further show that particle-swarm optimization can out perform more commonly used algorithms in terms of convergence time. Hence, our system combines all key ingredients for realizing fully on-chip smart optical wave form generators for next-generation applications in telecommunications, laser engineering, and nonlinear optics.
Original languageEnglish
Pages (from-to)1268-1276
JournalOptica
Volume8
Issue number10
Online published29 Sept 2021
DOIs
Publication statusPublished - Oct 2021

Publisher's Copyright Statement

  • © 2021 Optical Society of America. Users may use, reuse, and build upon the article, or use the article for text or data mining, so long as such uses are for non-commercial purposes and appropriate attribution is maintained. All other rights are reserved.

RGC Funding Information

  • RGC-funded

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