World's Best Scientists 2026 revealed!

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Electronics and Electrical Engineering

D-Index
53
Citations
12299
World Ranking
2374
National Ranking
17

Research.com Recognitions

  • 2006 - OSA Fellows For contributions to research and education on optical waveguides, optical fiber amplifiers and photonic crystal fibers in the field of optical communications.

Overview

Anders Bjarklev is affiliated with the Technical University of Denmark in Denmark. Their recent research publication includes a paper titled DEBAT: Lad universiteterne gøre det, de er bedst til published in 2022 in the journal Samfundsøkonomen.

Their publication record features work in the following venue:

  • Samfundsøkonomen

Anders Bjarklev has contributed to the field of optical communications, as evidenced by recognition from the OSA Fellows award received in 2006. The award citation notes their contributions specifically in optical waveguides, optical fiber amplifiers, and photonic crystal fibers.

Notable aspects of their research include work related to:

  • Optical waveguides
  • Optical fiber amplifiers
  • Photonic crystal fibers

Their collaborative network list does not currently indicate frequent co-authors.

Best Publications

  • Photonic Crystal Fibers: A New Class of Optical Waveguides

    Jes Broeng;Dmitri Mogilevstev;Stig E. Barkou;Anders Bjarklev

  • Strained silicon as a new electro-optic material

    Rune Shim Jacobsen;Karin Nordström Andersen;Karin Nordström Andersen;Peter Ingo Borel;Jacob Fage-Pedersen

  • Photonic crystal fibres

    Anders Overgaard Bjarklev;Jes Broeng;Araceli Sanchez Bjarklev

  • Fabrication of Photonic Crystal Fibres

    Anders Bjarklev;Jes Broeng;Araceli Sanchez Bjarklev

  • Optical devices based on liquid crystal photonic bandgap fibres

    Thomas Tanggaard Larsen;Anders Bjarklev;David Sparre Hermann;Jes Broeng

  • Gas sensing using air-guiding photonic bandgap fibers

    T. Ritari;H. Ludvigsen;J.C. Petersen;T. Sorensen

  • All-optical modulation in dye-doped nematic liquid crystal photonic bandgap fibers.

    Thomas Tanggaard Alkeskjold;Jesper Lægsgaard;Anders Bjarklev;David Sparre Hermann

  • Analysis of air-guiding photonic bandgap fibers.

    Jes Broeng;Stig E. Barkou;Thomas Søndergaard;Anders Bjarklev

  • Selective detection of antibodies in microstructured polymer optical fibers

    Jesper B. Jensen;Poul E. Hoiby;Grigoriy Emiliyanov;Ole Bang

  • Electrically tunable photonic bandgap guidance in a liquid-crystal-filled photonic crystal fiber

    M.W. Haakestad;T.T. Alkeskjold;M.D. Nielsen;L. Scolari

  • The design of erbium-doped fiber amplifiers

    B. Pedersen;A. Bjarklev;J.H. Povlsen;K. Dybdal

  • Selective filling of Photonic Crystal Fibres

    Kristian Nielsen;Danny Noordegraaf;Thorkild Sørensen;Anders Overgaard Bjarklev

  • Predicting macrobending loss for large-mode area photonic crystal fibers.

    M. D. Nielsen;N. A. Mortensen;M. Albertsen;J. R. Folkenberg

  • Continuously tunable devices based on electrical control of dual-frequency liquid crystal filled photonic bandgap fibers.

    Lara Scolari;Thomas Tanggaard Alkeskjold;Jesper Riishede;Anders Bjarklev

  • Optical wavelength converter

    Anders Bjarklev;Jes Broeng;Stig Eigil Barkou Libori

  • Direct UV writing of buried singlemode channel waveguides in Ge-doped silica films

    Unknown

  • Silica–air photonic crystal fiber design that permits waveguiding by a true photonic bandgap effect

    Stig E. Barkou;Jes Broeng;Anders Bjarklev

  • Soliton collision and Raman gain regimes in continuous-wave pumped supercontinuum generation.

    Michael H. Frosz;Ole Bang;Anders Bjarklev

  • Ultra-large bandwidth hollow-core guiding in all-silica Bragg fibers with nano-supports

    Guillaume Vienne;Yong Xu;Christian Jakobsen;Hans Jürgen Deyerl

  • Highly increased photonic band gaps in silica/air structures

    Jes Broeng;Stig E Barkou;Anders Bjarklev;Jonathan C Knight

  • Photonic crystal fibers

    J. Laegsgaard;K.P. Hansen;M.D. Nielsen;T.P. Hansen

  • Polarization-insensitive widely tunable wavelength converter based on four-wave mixing in a dispersion-flattened nonlinear photonic Crystal fiber

    K.K. Chow;C. Shu;Chinlon Lin;A. Bjarklev

Frequent Co-Authors

Jes Broeng
Jes Broeng Technical University of Denmark
Lei Wei
Lei Wei Nanyang Technological University
Shin-Tson Wu
Shin-Tson Wu University of Central Florida
Christophe Peucheret
Christophe Peucheret University of Rennes
Stefano Selleri
Stefano Selleri University of Parma
Chester Shu
Chester Shu Chinese University of Hong Kong
Trevor M. Benson
Trevor M. Benson University of Nottingham
Amnon Yariv
Amnon Yariv California Institute of Technology
Lei Zhai
Lei Zhai University of Central Florida

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