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Materials Science

D-Index
71
Citations
14795
World Ranking
4325
National Ranking
245

Overview

Jochen Fricke is affiliated with the University of Würzburg in Germany and has made contributions across physics and engineering disciplines. Their research spans multiple fields including Physics and Astronomy and Engineering, with a focus on several specialized subfields.

Their subfields of study include:

  • Atomic and Molecular Physics, and Optics
  • Civil and Structural Engineering
  • Control and Systems Engineering
  • Statistical and Nonlinear Physics
  • Acoustics and Ultrasonics

Fricke's work covers topics such as:

  • Cold Atom Physics and Bose-Einstein Condensates
  • Quantum, superfluid, helium dynamics
  • Structural Health Monitoring Techniques
  • Magnetic Bearings and Levitation Dynamics
  • Scientific Research and Discoveries
  • Atomic and Subatomic Physics Research
  • Random lasers and scattering media

Frequent publication venues for their research include:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Physical Review Letters
  • arXiv (Cornell University)

Several recent papers illustrate the breadth of their research contributions:

  • In Situ Imaging of the Thermal de Broglie Wavelength in an Ultracold Bose Gas, 2025, Physical Review Letters
  • The rotor as a sensor- Observing shear and veer from the operational data of a large wind turbine, 2023, Zenodo (CERN European Organization for Nuclear Research)
  • The rotor as a sensor- Observing shear and veer from the operational data of a large wind turbine, 2023, Zenodo (CERN European Organization for Nuclear Research)
  • In situ imaging of the thermal de Broglie wavelength in an ultracold Bose gas, 2024, arXiv (Cornell University)

Fricke frequently collaborates with researchers including Jinggang Xiang, Enid Cruz-Colón, C.L. Chua, William R. Milner, and Julius de Hond, each appearing in multiple joint publications. This collaborative approach spans both physics-focused studies and engineering applications.

Best Publications

  • Thermal conductivity of monolithic organic aerogels.

    X. Lu;M. C. Arduini-Schuster;J. Kuhn;O. Nilsson

  • Aerogels: production, characterization, and applications

    J Fricke;T Tillotson

  • High surface area carbon aerogels for supercapacitors

    R Saliger;U Fischer;C Herta;J Fricke

  • Correlation between structure and thermal conductivity of organic aerogels

    X. Lu;R. Caps;J. Fricke;C.T. Alviso

  • Silica aerogel granulate material for thermal insulation and daylighting

    M. Reim;W. Körner;J. Manara;S. Korder

  • Temperature-dependent thermal conductivity of porous silicon

    G Gesele;J Linsmeier;V Drach;J Fricke

  • Thermal and electrical conductivity of monolithic carbon aerogels

    Xianping Lu;Ove Nilsson;Jochen Fricke;Richard W. Pekala

  • Carbon aerogels derived from cresol–resorcinol–formaldehyde for supercapacitors

    Wencui Li;G Reichenauer;J Fricke

  • Aerogels — highly tenuous solids with fascinating properties

    J. Fricke

  • Thermal transport in polystyrene and polyurethane foam insulations

    J. Kuhn;H.-P. Ebert;M.C. Arduini-Schuster;D. Büttner

  • New organic aerogels based upon a phenolic-furfural reaction☆

    R.W Pekala;C.T Alviso;X Lu;J Gross

  • Vacuum insulation panels—From research to market

    J. Fricke;U. Heinemann;H.P. Ebert

  • Button cell supercapacitors with monolithic carbon aerogels

    H. Pröbstle;C. Schmitt;J. Fricke

  • Optimization of monolithic silica aerogel insulants

    J. Fricke;X. Lu;P. Wang;D. Büttner

  • PCM-facade-panel for daylighting and room heating

    Helmut Weinläder;Andreas Beck;Jochen Fricke

  • Aerogels—Preparation, properties, applications

    Jochen Fricke;Andreas Emmerling

  • Aerogels—Recent Progress in Production Techniques and Novel Applications

    J. Fricke;A. Emmerling

  • Relationship between optical transparency and nanostructural features of silica aerogels

    A. Emmerling;R. Petricevic;A. Beck;P. Wang

  • Thermal Diffusivity of Semitransparent Materials Determined by the Laser-Flash Method Applying a New Analytical Model

    H. Mehling;G. Hautzinger;O. Nilsson;J. Fricke

  • Mechanical properties of SiO2 aerogels

    J Gross;G Reichenauer;J Fricke

Frequent Co-Authors

Ulrich S. Schubert
Ulrich S. Schubert Friedrich Schiller University Jena
Robert W. Stark
Robert W. Stark Technical University of Darmstadt
Michael Reichelt
Michael Reichelt Max Planck Society
Bernd Zimanowski
Bernd Zimanowski University of Würzburg
Wolfgang M. Heckl
Wolfgang M. Heckl Deutsches Museum
Wolfgang Kiefer
Wolfgang Kiefer University of Würzburg

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