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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
33
Citations
4437
World Ranking
6090
National Ranking
28

Overview

Walter Margulis is affiliated with the Pontifical Catholic University of Rio de Janeiro in Brazil. Their research primarily spans the fields of Engineering and Physics and Astronomy, with a focus on Electrical and Electronic Engineering, Biomedical Engineering, and Atomic and Molecular Physics, and Optics. The subfields include Acoustics and Ultrasonics as well as Artificial Intelligence.

Their work extensively covers advanced topics related to fiber optics, lasers, and bio-sensing technologies. The main topics of their research are:

  • Advanced Fiber Optic Sensors
  • Photonic and Optical Devices
  • Random lasers and scattering media
  • Microfluidic and Bio-sensing Technologies
  • Advanced Fiber Laser Technologies
  • Semiconductor Lasers and Optical Devices
  • Digital Holography and Microscopy

Margulis has published a range of research papers in well-known scientific journals and conferences. Frequent publication venues include:

  • Optics Express
  • Conference on Lasers and Electro-Optics
  • Scientific Reports
  • EPJ Web of Conferences
  • Zenodo (CERN European Organization for Nuclear Research)

Some of the more recent papers associated with their research are:

  • "A Lab-in-a-Fiber optofluidic device using droplet microfluidics and laser-induced fluorescence for virus detection" (2022, Scientific Reports)
  • "Evaluation of Pearson correlation coefficient and Parisi parameter of replica symmetry breaking in a hybrid electronically addressable random fiber laser" (2021, Optics Express)
  • "Hybrid electronically addressable random fiber laser" (2020, Optics Express)
  • "Towards Distributed Measurements of Electric Fields Using Optical Fibers: Proposal and Proof-Of-Concept Experiment" (2020, Sensors)
  • "A mode-locked random laser generating transform-limited optical pulses" (2024, Nature Communications)

The scientist has collaborated frequently with colleagues such as Anderson S. L. Gomes, Jean Pierre von der Weid, Achar V. Harish, Aman Russom, and Fredrik Laurell. These collaborations have contributed to their body of work, emphasizing interdisciplinary approaches in optoelectronics and photonics.

Best Publications

  • Dye laser pumped by Nd:YAG laser pulses frequency doubled in a glass optical fiber.

    U. Österberg;W. Margulis

  • Experimental studies on efficient frequency doubling in glass optical fibers.

    Ulf Österberg;Walter Margulis

  • Integrated fiber Mach-Zehnder interferometer for electro-optic switching.

    Mikael Fokine;Lars-Erik Nilsson;Åke Claesson;D Berlemont

  • High power mid-infrared interband cascade lasers based on type-II quantum wells

    Rui Q. Yang;B. H. Yang;D. Zhang;C.-H. Lin

  • 10 cm Yb3+ DFB fibre laser with permanent phase shifted grating

    A. Asseh;H. Storoy;J.T. Kringlebotn;W. Margulis

  • Fiber Bragg grating (FBG) characterization and shaping by local pressure

    C.J.S. de Matos;P. Torres;L.C.G. Valente;W. Margulis

  • Interferometric study of poled glass under etching.

    W Margulis;F Laurell

  • Grating formation in pure silica-core fibers.

    Jacques Albert;Michael Fokine;Walter Margulis

  • Evaluation of two imaging techniques: near-infrared transillumination and dental radiographs for the detection of early approximal enamel caries

    A M A Maia;L Karlsson;W Margulis;A S L Gomes

  • Inducing a large second-order optical nonlinearity in soft glasses by poling

    F. C. Garcia;I. C. S. Carvalho;E. Hering;W. Margulis

  • A spectrally tunable microstructured optical fibre Bragg grating utilizing an infiltrated ferrofluid

    A. Candiani;M. Konstantaki;W. Margulis;S. Pissadakis

  • Large increase in photosensitivity through massive hydroxyl formation.

    Michael Fokine;Walter Margulis

  • Phase-shifted Bragg microstructured optical fiber gratings utilizing infiltrated ferrofluids

    Alessandro Candiani;Walter Margulis;Carola Sterner;Maria Konstantaki

  • Photonic scanning receiver using an electrically tuned fiber Bragg grating

    Patrik Rugeland;Zhangwei Yu;Carola Sterner;Oleksandr Tarasenko

  • Who needs a cathode? Creating a second-order nonlinearity by charging glass fiber with two anodes.

    W Margulis;O Tarasenko;N Myrén

  • Phase measurement in frequency-doubling fibers.

    Walter Margulis;Isabel C. S. Carvalho;Jean Pierre von der Weid

  • Optofluidic magnetometer developed in a microstructured optical fiber

    A Candiani;M Konstantaki;W Margulis;S Pissadakis

  • High performance micro-flow cytometer based on optical fibres

    Sebastian Etcheverry;A. Faridi;H. Ramachandraiah;T. Kumar

  • Active mode locking of a XeCl laser

    Grace Reksten;Thomas Varghese;Walter Margulis

  • Depletion region in thermally poled fused silica

    A. L. C. Triques;C. M. B. Cordeiro;V. Balestrieri;B. Lesche

  • All-fiber electrooptical mode-locking and tuning

    N. Myren;W. Margulis

Frequent Co-Authors

Miguel Gonzalez-Herraez
Miguel Gonzalez-Herraez University of Alcalá
Peter G. Kazansky
Peter G. Kazansky University of Southampton
Raman Kashyap
Raman Kashyap Polytechnique Montréal
Miguel V. Andrés
Miguel V. Andrés University of Valencia
Monica Ferraris
Monica Ferraris Polytechnic University of Turin
Salvador Sales
Salvador Sales Universitat Politècnica de València
José Capmany
José Capmany Universitat Politècnica de València
Jacques Albert
Jacques Albert Carleton University
Stefano Selleri
Stefano Selleri University of Parma
Valerio Pruneri
Valerio Pruneri Institute of Photonic Sciences

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