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Engineering and Technology

D-Index
43
Citations
6678
World Ranking
6232
National Ranking
205

Overview

Hartmut Bartelt is affiliated with the Leibniz Institute of Photonic Technology in Germany. Their research primarily spans the fields of Engineering and Physics and Astronomy, with a strong focus on Electrical and Electronic Engineering as a subfield alongside Atomic and Molecular Physics, and Optics.

The main topics covered by their work include:

  • Advanced Fiber Optic Sensors
  • Advanced Fiber Laser Technologies
  • Photonic and Optical Devices
  • Photonic Crystal and Fiber Optics
  • Mechanical and Optical Resonators
  • Glass properties and applications
  • Semiconductor Lasers and Optical Devices

Their recent publications reflect these research interests and include the following papers:

  • "Optical Vernier Effect: Recent Advances and Developments" (2021, Laser & Photonics Review)
  • "Hollow microsphere combined with optical harmonic Vernier effect for strain and temperature discrimination" (2020, Optics & Laser Technology)
  • "Regenerated Fibre Bragg Gratings: A critical assessment of more than 20 years of investigations" (2020, Optics & Laser Technology)
  • "Giant refractometric sensitivity by combining extreme optical Vernier effect and modal interference" (2020, Scientific Reports)
  • "Characterization and calibration of shape sensors based on multicore optical fibre" (2021, Optical Fiber Technology)

Frequent co-authors in their publications include:

  • Manfred Rothhardt
  • André D. Gomes
  • Orlando Frazão
  • Jan Dellith
  • Ravil Idrisov

Bartelt's work has appeared most often in the following journals and publication venues:

  • Optics & Laser Technology
  • Optical Fiber Technology
  • Optical Materials Express
  • Laser & Photonics Review
  • Scientific Reports

Best Publications

  • Coherent octave spanning near-infrared and visible supercontinuum generation in all-normal dispersion photonic crystal fibers.

    Alexander M. Heidt;Alexander Hartung;Gurthwin W. Bosman;Patrizia Krok

  • Optical Vernier Effect: Recent Advances and Developments

    André D. Gomes;André D. Gomes;Hartmut Bartelt;Orlando Frazão

  • Three-dimensional light bullets in arrays of waveguides.

    S. Minardi;F. Eilenberger;Y. V. Kartashov;A. Szameit

  • Nonlinearity and disorder in fiber arrays

    Thomas Pertsch;Ulf Peschel;Jens Kobelke;Kay Schuster

  • Fiber Bragg grating inscription combining DUV sub-picosecond laser pulses and two-beam interferometry

    Martin Becker;Joachim Bergmann;Sven Brückner;Marco Franke

  • High quality sub-two cycle pulses from compression of supercontinuum generated in all-normal dispersion photonic crystal fiber

    Alexander M. Heidt;Jan Rothhardt;Alexander Hartung;Hartmut Bartelt

  • Design of all-normal dispersion microstructured optical fibers for pulse-preserving supercontinuum generation

    Alexander Hartung;Alexander M. Heidt;Hartmut Bartelt

  • Optical Harmonic Vernier Effect: A New Tool for High Performance Interferometric Fiber Sensors

    André D. Gomes;Marta S. Ferreira;Jörg Bierlich;Jens Kobelke

  • Inscription and characterization of Bragg gratings in single-crystal sapphire optical fibres for high-temperature sensor applications

    Matthias Busch;Wolfgang Ecke;Ines Latka;Daniel Fischer

  • Mode resolved bend loss in few-mode optical fibers.

    Christian Schulze;Adrian Lorenz;Daniel Flamm;Alexander Hartung

  • Material and technology trends in fiber optics

    Kay Schuster;Sonja Unger;Claudia Aichele;Florian Lindner

  • Transversal Load Sensing With Fiber Bragg Gratings in Microstructured Optical Fibers

    T. Geernaert;G. Luyckx;E. Voet;T. Nasilowski

  • Simultaneous measurement of temperature and refractive index using focused ion beam milled Fabry-Perot cavities in optical fiber micro-tips.

    Ricardo M. André;Stephen C. Warren-Smith;Martin Becker;Jan Dellith

  • Microstructured Optical Fiber Sensors Embedded in a Laminate Composite for Smart Material Applications

    Camille Sonnenfeld;Sanne Sulejmani;Thomas Geernaert;Sophie Eve

  • Thermal regeneration of fiber Bragg gratings in photosensitive fibers.

    Eric Lindner;Christoph Chojetzki;Sven Brückner;Martin Becker

  • Inscription of first-order sapphire Bragg gratings using 400 nm femtosecond laser radiation

    Tino Elsmann;Tobias Habisreuther;Albrecht Graf;Manfred Rothhardt

  • Generation of high quality, 1.3 cycle pulses by active phase control of an octave spanning supercontinuum.

    Stefan Demmler;Jan Rothhardt;Alexander M Heidt;Alexander Hartung

  • Fiber Bragg Gratings in Germanium-Doped Highly Birefringent Microstructured Optical Fibers

    T. Geernaert;T. Nasilowski;K. Chah;M. Szpulak

  • Splicing Ge-doped photonic crystal fibers using commercial fusion splicer with default discharge parameters.

    Yiping Wang;Hartmut Bartelt;Sven Brueckner;Jens Kobelke

  • H 2 Sensing Based on a Pd-Coated Tapered-FBG Fabricated by DUV Femtosecond Laser Technique

    Susana Silva;L. Coelho;J. M. Almeida;O. Frazao

  • High force measurement sensitivity with fiber Bragg gratings fabricated in uniform-waist fiber tapers

    Torsten Wieduwilt;Sven Brückner;Hartmut Bartelt

Frequent Co-Authors

Manfred Rothhardt
Manfred Rothhardt Leibniz Institute of Photonic Technology
Kay Schuster
Kay Schuster Leibniz Institute of Photonic Technology
Orlando Frazão
Orlando Frazão Institute for Systems and Computer Engineering of Porto
Andreas Tünnermann
Andreas Tünnermann Friedrich Schiller University Jena
Stefan Nolte
Stefan Nolte Friedrich Schiller University Jena
Thomas Pertsch
Thomas Pertsch Friedrich Schiller University Jena
Yiping Wang
Yiping Wang Shenzhen University
Hugo Thienpont
Hugo Thienpont Vrije Universiteit Brussel
Francis Berghmans
Francis Berghmans Vrije Universiteit Brussel
Falk Lederer
Falk Lederer Friedrich Schiller University Jena

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