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Electronics and Electrical Engineering

D-Index
37
Citations
5369
World Ranking
5155
National Ranking
85

Overview

Johan S. Gustavsson is affiliated with Chalmers University of Technology in Sweden. Their research primarily spans the fields of engineering and physics and astronomy, with a focus on electrical and electronic engineering as the main subfield of study.

The scientist's work concentrates on photonic and optical devices, semiconductor lasers and optical devices, and semiconductor quantum structures and devices. Additional topics of research include GaN-based semiconductor devices and materials, semiconductor materials and devices, molecular junctions and nanostructures, and optical network technologies.

Johan S. Gustavsson has published several papers in various recognized venues. Recent papers include:

  • Enabling VCSEL-on-silicon nitride photonic integrated circuits with micro-transfer-printing, 2021, Optica
  • A 310 nm Optically Pumped AlGaN Vertical-Cavity Surface-Emitting Laser, 2020, ACS Photonics
  • Electrically Injected GaN-Based Vertical-Cavity Surface-Emitting Lasers with TiO2 High-Index-Contrast Grating Reflectors, 2020, ACS Photonics
  • High-angle deflection of metagrating-integrated laser emission for high-contrast microscopy, 2023, Light Science & Applications
  • Large-Signal Equivalent Circuit for Datacom VCSELs, 2021, Journal of Lightwave Technology

The frequent co-authors collaborating with Johan S. Gustavsson include:

  • Anders Larsson
  • Alexander Grabowski
  • Jeroen Goyvaerts
  • Roel Baets
  • Günther Roelkens

Johan S. Gustavsson's contributions have appeared repeatedly in several key publication venues such as:

  • IEEE Journal of Quantum Electronics
  • ACS Photonics
  • Journal of Lightwave Technology
  • Applied Physics Letters
  • Optica

The research output covers a variety of interdisciplinary topics, often focusing on semiconductor and photonic technologies with applications relevant to optical communications and devices. The scientist's work includes experimental and theoretical investigations in vertical-cavity surface-emitting lasers (VCSELs) and integrated photonic circuits.

Best Publications

  • A 71-Gb/s NRZ Modulated 850-nm VCSEL-Based Optical Link

    Daniel M. Kuchta;Alexander V. Rylyakov;Fuad E. Doany;Clint L. Schow

  • Advances in VCSELs for Communication and Sensing

    A. Larsson

  • Single fundamental-mode output power exceeding 6 mW from VCSELs with a shallow surface relief

    A. Haglund;J.S. Gustavsson;J. Vukusic;P. Modh

  • Impact of Photon Lifetime on High-Speed VCSEL Performance

    P. Westbergh;J. S. Gustavsson;B. Kögel;A. Haglund

  • High-Speed, Low-Current-Density 850 nm VCSELs

    P. Westbergh;J.S. Gustavsson;A. Haglund;M. Skold

  • High-speed 850 nm VCSELs operating error free up to 57 Gbit/s

    Petter Westbergh;Emanuel P. Haglund;Erik Haglund;Rashid Safaisini

  • 4-PAM for high-speed short-range optical communications

    K. Szczerba;P. Westbergh;J. Karout;J. S. Gustavsson

  • High-speed 850 nm VCSELs with 28 GHz modulation bandwidth operating error-free up to 44 Gbit/s

    Petter Westbergh;Rashid Safaisini;Erik Haglund;Benjamin Kögel

  • 30 GHz bandwidth 850 nm VCSEL with sub-100 fJ/bit energy dissipation at 25–50 Gbit/s

    Erik Haglund;Petter Westbergh;Johan S. Gustavsson;Emanuel P. Haglund

  • 64Gb/s transmission over 57m MMF using an NRZ modulated 850nm VCSEL

    Daniel M. Kuchta;Alexander V. Rylyakov;Clint L. Schow;Jonathan E. Proesel

  • 40 Gbit/s error-free operation of oxide-confined 850 nm VCSEL

    Petter Westbergh;Johan S. Gustavsson;Benjamin Kögel;Åsa Haglund

  • A 50 Gb/s NRZ Modulated 850 nm VCSEL Transmitter Operating Error Free to 90 °C

    Daniel M. Kuchta;Alexander V. Rylyakov;Clint L. Schow;Jonathan E. Proesel

  • High-Speed Oxide Confined 850-nm VCSELs Operating Error-Free at 40 Gb/s up to 85 $^{\circ}{ m C}$

    P. Westbergh;R. Safaisini;E. Haglund;J. S. Gustavsson

  • Active Region Design for High-Speed 850- nm VCSELs

    S.B. Healy;E.P. O'Reilly;J.S. Gustavsson;P. Westbergh

  • A comprehensive model for the modal dynamics of vertical-cavity surface-emitting lasers

    J.S. Gustavsson;J.A. Vukusic;J. Bengtsson;A. Larsson

  • 32 Gbit/s multimode fibre transmission using high-speed, low current density 850 nm VCSEL

    Petter Westbergh;Johan S. Gustavsson;Åsa Haglund;Anders Larsson

  • Assessment of VCSEL thermal rollover mechanisms from measurements and empirical modeling

    Prashant P. Baveja;Benjamin Kögel;Petter Westbergh;Johan S. Gustavsson

  • Impedance Characteristics and Parasitic Speed Limitations of High-Speed 850-nm VCSELs

    Y. Ou;J.S. Gustavsson;P. Westbergh;A. Haglund

  • Large aperture 850 nm VCSELs operating at bit rates up to 25 Gbit/s

    Petter Westbergh;Johan S. Gustavsson;Åsa Haglund;Henrik Sunnerud

  • 25 Gbit/s transmission over 500 m multimode fibre using 850 nm VCSEL with integrated mode filter

    Erik Haglund;Åsa Haglund;Petter Westbergh;Johan S. Gustavsson

  • 40 Gb/s data transmission over a 1-m-long multimode polymer spiral waveguide for board-level optical interconnects

    Nikolaos Bamiedakis;Jian Chen;Petter Westbergh;Johan S Gustavsson

  • High-Speed VCSELs With Strong Confinement of Optical Fields and Carriers

    Erik Haglund;Petter Westbergh;Johan S. Gustavsson;Emanuel P. Haglund

  • 20 Gbit/s data transmission over 2 km multimode fibre using 850 nm mode filter VCSEL

    Rashid Safaisini;Erik Haglund;Petter Westbergh;Johan S. Gustavsson

  • High-speed 850 nm VCSELs with 28 GHz modulation bandwidth

    Petter Westbergh;Rashid Safaisini;Erik Haglund;Benjamin Kögel

Frequent Co-Authors

Petter Westbergh
Petter Westbergh Chalmers University of Technology
Roel Baets
Roel Baets Ghent University
Gunther Roelkens
Gunther Roelkens Ghent University
Peter A. Andrekson
Peter A. Andrekson Chalmers University of Technology
Nicolas Grandjean
Nicolas Grandjean École Polytechnique Fédérale de Lausanne
Markus-Christian Amann
Markus-Christian Amann Technical University of Munich
Dieter Bimberg
Dieter Bimberg Changchun Institute of Optics, Fine Mechanics and Physics (CIOMP)
Dietmar Kissinger
Dietmar Kissinger University of Ulm
Michael Kneissl
Michael Kneissl Technical University of Berlin
Clint L. Schow
Clint L. Schow University of California, Santa Barbara

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