World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
33
Citations
5151
World Ranking
6007
National Ranking
301

Overview

Francesca Parmigiani is affiliated with Microsoft Research in the United Kingdom. Their research spans several intersecting fields including Engineering, Physics and Astronomy, and Computer Science, with a focus on Electrical and Electronic Engineering, Atomic and Molecular Physics and Optics, and Artificial Intelligence. The scientist's work primarily explores topics within Optical Network Technologies, Advanced Fiber Laser Technologies, Neural Networks and Reservoir Computing, Photonic and Optical Devices, Photonic Crystal and Fiber Optics, Orbital Angular Momentum in Optics, and Advanced Memory and Neural Computing.

Recent publications by Francesca Parmigiani include:

  • Roadmap on multimode photonics, 2022, Journal of Optics
  • Progress Toward Spatially-Entangled Photon-Pair Generation in a Few-Mode Fiber, 2021, IEEE Photonics Technology Letters
  • Reconfigurable Spatial-Mode-Selective Frequency Conversion in a Three-Mode Fiber, 2021, IEEE Photonics Technology Letters
  • Analog Iterative Machine (AIM): using light to solve quadratic optimization problems with mixed variables, 2023, arXiv (Cornell University)
  • Roadmap on Neuromorphic Photonics, 2025, arXiv (Cornell University)

The scientist frequently publishes in venues such as the Conference on Lasers and Electro-Optics, IEEE Photonics Technology Letters, arXiv (Cornell University), Journal of Optics, and Frontiers in Optics / Laser Science.

Collaboration is integral to their research, with frequent co-authors including Afshin Shamsshooli, Cheng Guo, Xiaoying Li, Michael Vasilyev, and Christos Gkantsidis. These collaborations are reflected across multiple publications and research projects.

Best Publications

  • 26 Tbit s-1 line-rate super-channel transmission utilizing all-optical fast Fourier transform processing

    D. Hillerkuss;R. Schmogrow;T. Schellinger;M. Jordan

  • All-optical phase and amplitude regenerator for next-generation telecommunications systems

    Radan Slavík;Francesca Parmigiani;Joseph Kakande;Carl Lundström

  • Single-laser 32.5 Tbit/s Nyquist WDM transmission

    D. Hillerkuss;R. Schmogrow;M. Meyer;S. Wolf

  • Roadmap on all-optical processing

    Paolo Minzioni;Cosimo Lacava;Takasumi Tanabe;Jianji Dong

  • Multilevel quantization of optical phase in a novel coherent parametric mixer architecture

    Joseph Kakande;Radan Slavík;Francesca Parmigiani;Adonis Bogris;Adonis Bogris

  • Ultra-flat SPM-broadened spectra in a highly nonlinear fiber using parabolic pulses formed in a fiber Bragg grating

    Francesca Parmigiani;Christophe Finot;Kazunori Mukasa;Morten Ibsen

  • Demonstration of amplified data transmission at 2 µm in a low-loss wide bandwidth hollow core photonic bandgap fiber

    M N Petrovich;F Poletti;J P Wooler;A M Heidt

  • Parabolic pulse evolution in normally dispersive fiber amplifiers preceding the similariton formation regime

    C. Finot;F. Parmigiani;P. Petropoulos;D.J. Richardson

  • Single source optical OFDM transmitter and optical FFT receiver demonstrated at line rates of 5.4 and 10.8 Tbit/s

    D. Hillerkuss;T. Schellinger;R. Schmogrow;M. Winter

  • Phase sensitive amplification based on quadratic cascading in a periodically poled lithium niobate waveguide.

    Kwang Jo Lee;Francesca Parmigiani;Sheng Liu;Joseph Kakande

  • High Capacity Mode-Division Multiplexed Optical Transmission in a Novel 37-cell Hollow-Core Photonic Bandgap Fiber

    Vincent A. J. M. Sleiffer;Yongmin Jung;Naveen K. Baddela;Janis Surof

  • Detailed characterization of a fiber-optic parametric amplifier in phase-sensitive and phase-insensitive operation

    Joseph Kakande;Carl Lundström;Peter A. Andrekson;Zhi Tong

  • Roadmap on multimode photonics

    Unknown

  • Pulse retiming based on XPM using parabolic pulses formed in a fiber Bragg grating

    F. Parmigiani;P. Petropoulos;M. Ibsen;D.J. Richardson

  • Inter-modal four-wave mixing study in a two-mode fiber

    Søren M. Friis;Ioannis Begleris;Yongmin Jung;Karsten Rottwitt

  • First demonstration of all-optical QPSK signal regeneration in a novel multi-format phase sensitive amplifier

    Joseph Kakande;Adonis Bogris;Radan Slavik;Francesca Parmigiani

  • Dispersion controlled highly nonlinear fibers for all-optical processing at telecoms wavelengths

    Xian Feng;Francesco Poletti;Angela Camerlingo;Francesca Parmigiani

  • Errata to “All-Optical Pulse Reshaping and Retiming Systems Incorporating Pulse Shaping Fiber Bragg Grating”

    F. Parmigiani;P. Petropoulos;M. Ibsen;D.J. Richardson

  • Compensation of Linear Distortions by Using XPM With Parabolic Pulses as a Time Lens

    T.T. Ng;F. Parmigiani;M. Ibsen;Zhaowei Zhang

  • An Efficient Wavelength Converter Exploiting a Grating-Based Saw-Tooth Pulse Shaper

    F. Parmigiani;M. Ibsen;T.T. Ng;L. Provost

  • Progress in Multichannel All-Optical Regeneration Based on Fiber Technology

    F. Parmigiani;L. Provost;P. Petropoulos;D. J. Richardson

  • All-optical mode and wavelength converter based on parametric processes in a three-mode fiber

    Francesca Parmigiani;Peter Horak;Yongmin Jung;Lars Gruner-Nielsen

Frequent Co-Authors

Periklis Petropoulos
Periklis Petropoulos University of Southampton
David J. Richardson
David J. Richardson Microsoft (United States)
Radan Slavik
Radan Slavik University of Southampton
Morten Ibsen
Morten Ibsen University of Southampton
Peter Horak
Peter Horak University of Southampton
Wolfgang Freude
Wolfgang Freude Karlsruhe Institute of Technology
Andrew D. Ellis
Andrew D. Ellis Aston University
Yongmin Jung
Yongmin Jung University of Southampton
Francesco Poletti
Francesco Poletti University of Southampton
Juerg Leuthold
Juerg Leuthold ETH Zurich

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