Publikationen von Michael Steinke

Article

  • Komban, R.; Spelthann, S.; Steinke, M.; Ristau, D.; Ruehl, A.; Gimmler, C.; Welle, H. (2022): Bulk-like emission in the visible spectrum of colloidal LiYF4:Pr nanocrystals downsized to 10 nmNanoscale Advances, 4, 2973-2978
    DOI: 10.1039/D2NA00045H
    ISSN: 2516-0230
  • Hochheim, S.; Brockmüller, E.; Wessels, P.; Steinke, M.; Koponen, J.; Lowder, T.; Novotny, S.; Willke, B.; Neumann, J.; Kracht, D. (2021): Highly-Integrated Signal and Pump Combiner in Chirally-Coupled-Core FibersJournal of Lightwave Technology vol.40, no.7, pp.2136-2143
    DOI: 10.1109/JLT.2021.3111993
    ISSN: 0733-8724
  • Steinke, M. (2021): Full-Vectorial Fiber Mode Solver Based on a Discrete Hankel TransformPhotonics 2021, 8(10), 439
    DOI: 10.3390/photonics8100439
  • Steinke, M.; Spelthann, S.; Rühl, A.; Ristau, D. (2021): Absorption and multi-phonon quenching in nanocrystal doped SiO2 fibersOptical Materials Express 11, 1631-1642
    DOI: 10.1364/OME.424116
  • Booker, P.; De Varona, O.; Steinke, M.; Wessels, P.; Neumann, J.; Kracht, D. (2020): Experimental and numerical study of interlock requirements for high-power EYDFAsOptics Express 28, 31480-31486
    DOI: 10.1364/OE.405812
  • Booker, P.; de Varona, O.; Steinke, M.; Wessels, P.; Neumann, J.; Kracht, D. (2020): Experimental and numerical study of interlock requirements for high-power EYDFAsOptics Express Vol. 28, Issue 21, pp. 31480-31486
    DOI: 10.1364/OE.405812
  • Hochheim, S.; Steinke, M.; Wessels, P.; de Varona, O.; Koponen, J.; Lowder, T.; Novotny, S.; Neumann, J.; Kracht, D. (2020): Single-frequency chirally coupled-core all-fiber amplifier with 100 W in a linearly polarized TEM00 modeOptics Letters Vol. 45, Issue 4, pp. 939-942
    DOI: 10.1364/OL.379002
  • Hochheim, S.; Steinke, M.; Wessels, P.; Neumann, J.; Kracht, D. (2020): Broadband excess intensity noise due to an asymmetric Brillouin gain spectrum in optical fibersOSA Continuum, Vol. 3, Issue 10, pp. 2902-2911
    DOI: 10.1364/OSAC.404728
  • Wellmann, F.; Steinke, M.; Wessels, P.; Bode, N.; Meylahn, F.; Willke, B.; Overmeyer, L.; Neumann, J.; Kracht, D. (2020): Performance study of a high-power single-frequency fiber amplifier architecture for gravitational wave detectorsApplied Optics 59, 7945-7950
    DOI: 10.1364/AO.401048
  • Schlangen, S.; Bremer, K.; Böhm, S.; Wellmann, F.; Steinke, M.; Neumann, J.; Roth, B.; Overmeyer, L. (2019): Grating assisted glass fiber coupler for mode selective co-directional couplingOptics Letters Vol. 44, Issue 9, pp. 2342-2345
    DOI: 10.1364/OL.44.002342
  • Wellmann, F.; Steinke, M.; Meylahn, F.; Bode, N.; Willke, B.; Overmeyer, L.; Neumann, J.; Kracht, D. (2019): High power, single-frequency, monolithic fiber amplifier for the next generation of gravitational wave detectorsOptics Express Vol. 27, Issue 20, pp. 28523-28533
    DOI: 10.1364/OE.27.028523

Proceeding

  • Kötters, L.; Spelthann, S.; Bühre, L.; Komban, R.; Weller, H.; Hanke-Rauschenbach, R.; Ristau, D.; Stephan, R.; Gimmler, C.; Bensmann, B.; Steinke, M. (2022): Fiber-tip nanothermometer based on up-conversion nanocrystals for electrolysis cellsEurophoton 2022, Hannover, Poster THU-P-2.4 Weitere Informationen
  • Scharf, E.; Kuschmierz, R.; Stephan, R.; Steinke, M.; Czarske, J. (2022): Needle-size fibre endoscope with 3D printed DOEs for minimally invasive procedures in biomedicineProceedings Volume PC12144, Biomedical Spectroscopy, Microscopy, and Imaging II; PC121440L, oral presentation
    DOI: 10.1117/12.2620319
  • Spelthann, S.; Klepzig, L.F.; Huy Chau, D.; Chemnitz, M.; Junaid, S.; Stephan, R.; Hausmann, K.; Schmidt, M. A.; Lauth, J.; Steinke, M.; Ristau, D. (2022): Optical emission characterization of liquid core fibers filled with colloidal nanoplateletsEurophoton 2022, Hannover, Poster TUE-P-1.27 Weitere Informationen
  • Spelthann, S.; Steinke, M.; Komban, R.; Weller, H.; Gimmler, C.; Ruehl, A.; Ristau, D. (2022): Colloidal LiYF4:Pr nanocrystals downsized to 10 nm – Part 2: spectroscopic propertiesEurophoton 2022, Hannover, Poster THU-P-2.18 Weitere Informationen
  • Stephan, R.; Scharf, E.; Zolnacz, K.; Hausmann, K.; Liessmann, M.; Kötters, L.; Czarske, J.; Ristau, D.; Kuschmierz, R.; Steinke, M. (2022): Scalable fabrication of twisted aperiodic multicore fibers for next-generation lens-less endoscopyEurophoton 2022, Hannover, Poster THU-P-2.5 Weitere Informationen
  • Booker, P.; de Varona, O.; Steinke, M.; Wessels, P.; Neumann, J.; Kracht, D. (2021): Two-stage fully monolithic single-frequency Er:Yb fiber amplifier at 1556 nm for next-generation of gravitational wave detectorsProc. SPIE 11665, Fiber Lasers XVIII: Technology and Systems, 116650O, oral presentation and paper
    DOI: 10.1117/12.2577446
  • Stephan, R.; Steinke, M.; Rühl, A.; Kuschmierz, R.; Hausmann, K.; Ließmann, M.; Ristau, D.; Czarske, J. (2021): Design studies of aperiodic multicore fibres for lensless endoscopyEuropean Conferences on Biomedical Optics 2021 (ECBO), OSA Technical Digest (Optica Publishing Group, 2021), paper ETu2A.30
    ISBN: 978-1-943580-95-8
  • Wellmann, F.; Bode, N.; Steinke, M.; Meylahn, F.; Willke, B.; Overmeyer, L.; Weßels, P.; Neumann, J.; Kracht, D. (2021): Coherent beam combining of two single-frequency 200W fiber amplifiers for gravitational wave detectorsProc. SPIE 11665, Fiber Lasers XVIII: Technology and Systems, 116651J, oral presentation
    DOI: 10.1117/12.2578085
  • Wellmann, F.; Steinke, M.; Wysmolek, M.; Weßels, P.; Overmeyer, L.; Neumann, J.; Kracht, D. (2021): CO2-laser based micro-machining for fiber component manufacturingProc. SPIE 11667, Components and Packaging for Laser Systems VII, 116670E, oral presentation
    DOI: 10.1117/12.2578491
  • Hochheim, S.; Brockmüller, E.; Wessels, P.; Steinke, M.; Koponen, J.; Lowder, T.; Novotny, S.; Neumann, J.; Kracht, D. (2020): Integrated fiber components based on chirally-coupled-core fibers for all-fiber amplifierProc. SPIE 11357, Fiber Lasers and Glass Photonics: Materials through Applications II, 113570Y, oral presentation and paper
    DOI: 10.1117/12.2555401
  • Wellmann, F.; Steinke, M.; Meylahn, F.; Bode, N.; Willke, B.; Overmeyer, L.; Weßels, P.; Neumann, J.; Kracht, D. (2020): Low-noise, single-frequency 200 W fiber amplifierProc. SPIE 11260, Fiber Lasers XVII: Technology and Systems, 1126013, oral presentation and paper
    DOI: 10.1117/12.2543292
  • Booker, P.; Dürbeck, M.; Boetti, N. G.; Pugliese, D.; Abrate, S.; Milanese, D.; Steinke, M.; Neumann, J.; Kracht, D. (2019): Single-frequency Er3+ doped phosphate fiber MOPA2019 Conference on Lasers and Electro-Optics Europe and European Quantum Electronics Conference, OSA Technical Digest (Optica Publishing Group, 2019), paper cj_p_17
    ISBN: 978-1-7281-0469-0
  • Bremer, K.; Schlangen, S.; Böhm, S.; Wellmann, F.; Steinke, M.; Neumann, J.; Roth, B.; Overmeyer, L. (2019): Investigation of grating assisted mode-selective few-mode fused fiber couplers2019 Conference on Lasers and Electro-Optics Europe and European Quantum Electronics Conference, OSA Technical Digest (Optica Publishing Group, 2019), paper ci_5_6
    ISBN: 978-1-7281-0469-0
  • Hochheim, S.; Steinke, M.; Koponen, J.; Lowder, T.; Novotny, S.; Neumann, J.; Kracht, D. (2019): Monolithic amplifier based on a Chirally-coupled-core fiber2019 Conference on Lasers and Electro-Optics Europe and European Quantum Electronics Conference, OSA Technical Digest (Optica Publishing Group, 2019), paper cj_p_19
    ISBN: 978-1-7281-0469-0
  • Wellmann, F.; Steinke, M.; Meylahn, F.; Bode, N.; Willke, B.; Overmeyer, L.; Weßels, P.; Neumann, J.; Kracht, D. (2019): Characterization and Long-Term Operation of a 200 W Single-Frequency Fiber Amplifier for Gravitational Wave DetectorsLaser Congress 2019 (ASSL, LAC, LS&C), OSA Technical Digest (Optica Publishing Group, 2019), paper ATu1A.5
    DOI: 10.1364/ASSL.2019.ATu1A.5