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Electronics and Electrical Engineering

D-Index
34
Citations
4801
World Ranking
5811
National Ranking
166

Overview

Lars Zimmermann is a researcher affiliated with the Technical University of Berlin in Germany. Their primary field of study is Engineering, with a strong focus on Electrical and Electronic Engineering. Their work encompasses several subfields, including Atomic and Molecular Physics, and Optics, Biomedical Engineering, Inorganic Chemistry, and Spectroscopy.

The main topics covered by Zimmermann's research include:

  • Photonic and Optical Devices
  • Advanced Photonic Communication Systems
  • Optical Network Technologies
  • Semiconductor Lasers and Optical Devices
  • Photonic Crystals and Applications
  • Advanced Fiber Laser Technologies
  • Semiconductor Quantum Structures and Devices

Zimmermann has published multiple papers in well-regarded scientific venues. Noteworthy recent publications include:

  • Ultra-fast germanium photodiode with 3-dB bandwidth of 265 GHz, 2021, Nature Photonics
  • A monolithic bipolar CMOS electronic-plasmonic high-speed transmitter, 2020, Nature Electronics
  • Toward coherent O-band data center interconnects, 2021, Frontiers of Optoelectronics
  • Multiband Silicon Photonic ePIC Coherent Receiver for 64 GBd QPSK, 2022, Journal of Lightwave Technology
  • Silicon electronic-photonic integrated 25 Gb/s ring modulator transmitter with a built-in temperature controller, 2021, Photonics Research

The main publication venues where Zimmermann frequently contributes include:

  • Journal of Lightwave Technology
  • Japanese Journal of Applied Physics
  • Nature Photonics
  • Frontiers of Optoelectronics
  • IEEE Photonics Technology Letters

Their collaborative network features frequent coauthors such as:

  • Stefan Lischke
  • Anna Pęczek
  • Christian Mai
  • Galina Georgieva
  • Pascal M. Seiler

Best Publications

  • Silicon Photonic Circuits: On-CMOS Integration, Fiber Optical Coupling, and Packaging

    C Kopp;Stéphane Bernabé;B B Bakir;J Fedeli

  • Ultra-fast germanium photodiode with 3-dB bandwidth of 265 GHz

    S. Lischke;A. Peczek;J. S. Morgan;K. Sun

  • High bandwidth, high responsivity waveguide-coupled germanium p-i-n photodiode.

    Stefan Lischke;Dieter Knoll;Christian Mai;Lars Zimmermann

  • A BaTiO 3 -Based Electro-Optic Pockels Modulator Monolithically Integrated on an Advanced Silicon Photonics Platform

    Felix Eltes;Christian Mai;Daniele Caimi;Marcel Kroh

  • Open-Access Silicon Photonics Platforms in Europe

    Abdul Rahim;Jeroen Goyvaerts;Bertrand Szelag;Jean-Marc Fedeli

  • Airbag application: a microsystem including a silicon capacitive accelerometer, CMOS switched capacitor electronics and true self-test capability

    Unknown

  • A monolithic bipolar CMOS electronic–plasmonic high-speed transmitter

    Ueli Koch;Christopher Uhl;Horst Hettrich;Yuriy Fedoryshyn

  • Continuously tunable delay line based on SOI tapered Bragg gratings

    Ivano Giuntoni;David Stolarek;Dimitar I Kroushkov;Jürgen Bruns

  • Phase regeneration of DPSK signals in a silicon waveguide with reverse-biased p-i-n junction.

    Francesco Da Ros;Dragana Vukovic;Andrzej Gajda;Kjeld Dalgaard

  • Highly efficient CW parametric conversion at 1550 nm in SOI waveguides by reverse biased p-i-n junction.

    Andrzej Gajda;Lars Zimmermann;Mahmoud Jazayerifar;Georg Winzer

  • -Band Optical 90 -Hybrids Based on Silicon-on-Insulator 4 4 Waveguide Couplers

    Lars Zimmermann;Karsten Voigt;Georg Winzer;Klaus Petermann

  • A 40 Gb/s Monolithically Integrated Linear Photonic Receiver in a $0.25~\mu { m m}$ BiCMOS SiGe:C Technology

    Ahmed Awny;Rajasekhar Nagulapalli;Georg Winzer;Marcel Kroh

  • $C$ -Band Optical 90 $^{\circ}$ -Hybrids Based on Silicon-on-Insulator 4 $ imes$ 4 Waveguide Couplers

    L. Zimmermann;K. Voigt;G. Winzer;K. Petermann

  • High Performance Mach–Zehnder-Based Silicon Optical Modulators

    David J. Thomson;Frederic Y. Gardes;Sheng Liu;Henri Porte

  • Dispersion engineered silicon nitride waveguides by geometrical and refractive-index optimization

    J. M. Chavez Boggio;D. Bodenmüller;T. Fremberg;R. Haynes

  • Performance of 40-Gb/s DPSK Demodulator in SOI-Technology

    K. Voigt;L. Zimmermann;G. Winzer;T. Mitze

  • Monolithically integrated 25Gbit/sec receiver for 1.55µm in photonic BiCMOS technology

    Dieter Knoll;Stefan Lischke;Lars Zimmermann;Bernd Heinemann

  • A BaTiO3-Based Electro-Optic Pockels Modulator Monolithically Integrated on an Advanced Silicon Photonics Platform

    Felix Eltes;Christian Mai;Daniele Caimi;Marcel Kroh

  • A Monolithically Integrated Segmented Linear Driver and Modulator in EPIC 0.25- $\mu$ m SiGe:C BiCMOS Platform

    Pedro Rito;Iria Garcia Lopez;Despoina Petousi;Lars Zimmermann

  • Analysis of Optical and Electrical Tradeoffs of Traveling-Wave Depletion-Type Si Mach–Zehnder Modulators for High-Speed Operation

    Despoina Petousi;Lars Zimmermann;Andrzej Gajda;Marcel Kroh

  • $C$ -Band Optical 90 $^{\circ}$ Hybrids in Silicon Nanowaveguide Technology

    K. Voigt;L. Zimmermann;G. Winzer;Hui Tian

  • How to bring nanophotonics to application - silicon photonics packaging

    Lars Zimmermann;Henning Schroeder

Frequent Co-Authors

Klaus Petermann
Klaus Petermann Technical University of Berlin
Bernd Tillack
Bernd Tillack Innovations for High Performance Microelectronics
Dietmar Kissinger
Dietmar Kissinger University of Ulm
Woo-Young Choi
Woo-Young Choi Yonsei University
Hercules Avramopoulos
Hercules Avramopoulos National Technical University of Athens
Graham T. Reed
Graham T. Reed University of Southampton
David J. Thomson
David J. Thomson University of Southampton
Juerg Leuthold
Juerg Leuthold ETH Zurich
Wim Bogaerts
Wim Bogaerts Ghent University

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