Watt-level red-emitting diode lasers and modules for display applications
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  • 作者:Katrin Paschke ; Gunnar Blume ; David Feise ; Johannes Pohl ; Bernd Sumpf
  • 关键词:Tapered diode laser ; Distributed Bragg reflection ; Master oscillator power amplifier ; Flying spot ; Hologram 3D display ; Red ; emitting laser sources ; Brightness
  • 刊名:Optical Review
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:23
  • 期:1
  • 页码:146-152
  • 全文大小:787 KB
  • 参考文献:1.Kawata, S., Fujii, H., Kobayashi, K., Gomyo, A., Hino, I., Suzuki, T.: Room-temperature continuous-wave operation of a 640 nm AlGaInP visible-light semiconductor laser. Electron. Lett. 23(24), 1327–1328 (1987)CrossRef
    2.Tukiainen, A., Toikkanen, L., Haavisto, M., Erojärvi, V., Rimpiläinen, V., Viheriälä, J., Pessa, M.: AlInP–AlGaInP quantum-well lasers grown by molecular beam epitaxy. IEEE Photon Technol. Lett. 18(21), 2257–2259 (2006)CrossRef ADS
    3.Shimada, N., Ohno, A., Abe, S., Miyashita, M., Yagi, T.: High-power 625-nm Al-GaInP laser diode. IEEE J. Sel. Topics Quantum Electron. 17 (6), 1723–1726 (2011)
    4.Pezeshki, B., Hagberg, M., Lu, B., Zelinski, M., Zou, S., Kolev, E.: High-power and diffraction-limited red lasers. Proc. SPIE 3947, 80–90 (2000)CrossRef ADS
    5.Blume, G., Kaspari, C., Feise, D., Sahm, A., Sumpf, B., Eppich, B., Paschke, K.: Tapered diode lasers and laser modules near 635 nm with efficient fiber coupling for flying-spot display applications. Opt. Rev. 19(6), 395–399 (2012)CrossRef
    6.Schwerdtner, A., Leister, N., Häussler, R.: A new approach to Electro-Holography for TV and projection displays. In: SID Symposium Digest, vol. 38, pp. 1224–1227 (2007)
    7.Zschau, E., Missbach, R., Schwerdtner, A., Stolle, H.: Generation, encoding, and presentation of content on holographic displays in real time. In: Three-dimensional imaging, visualization, and display, pp. 76900E–76900E-13 (2010)
    8.Feise, D., John, W., Bugge, F., Blume, G., Hassoun, T., Fricke, J., Paschke, K., Erbert, G.: 96 mW longitudinal single mode red-emitting distributed Bragg reflector ridge waveguide laser with tenth order surface gratings. Opt. Lett. 37(9), 1532–1534 (2012)CrossRef ADS
    9.Odriozola, H., Tijero, J.M.G., Borruel, L., Esquivia, I., Wenzel, H., Dittmar, F., Paschke, K., Sumpf, B., Erbert, G.: Beam properties of 980-nm tapered lasers with separate contacts: experiments and Simulations. IEEE J. Quantum Electron. 45(1), 42–49 (2009)CrossRef ADS
    10.Adamiec, P., Sumpf, B., Feise, D., Hasler, K.-H., Ressel, P., Wenzel, H., Zorn, M., Weyers, M., Erbert, G., Tränkle, G.: Twin-contact 645-nm tapered laser with 500-mW output power. IEEE Photonics Technol. Lett. 21(4), 236–238 (2009)CrossRef ADS
    11.Blume, G., Feise, D., Dittrich, H., Kaspari, C., Paschke, K., Erbert, G.: Red-emitting tapered diode lasers for display applications. Proc. SPIE 7720(77201B), 1–12 (2010)
    12.Sumpf, B., Hasler, K.-H., Adamiec, P., Bugge, F., Dittmar, F., Fricke, J., Wenzel, H., Zorn, M., Erbert, G., Tränkle, G.: High
    ightness quantum well tapered lasers. IEEE J. Sel. Topics Quantum Electron. 15(3), 1009–1020 (2009)CrossRef
    13.Blume, G., Feise, D., Kaspari, C., Sahm, A., Paschke, K.: High luminance tapered diode lasers for flying-spot display applications. Advances in display technologies II. Proc. SPIE 8280(82800E), 1–10 (2012)
    14.Sumpf, B., Adamiec, P., Fricke, J., Ressel, P., Wenzel, H., Erbert, G., Tränkle, G.: Comparison of 650 nm tapered lasers with different lateral geometries at output powers up to 1 W. Proc. SPIE 7616(7616H), 1–8 (2010)
    15.Feise, D., Blume, G., Pohl, J., Paschke, K.: Distributed Bragg reflector ridge waveguide lasers emitting longitudinal single mode at 647 nm. IEEE J. Sel. Topics Quantum Electron. 21(6), 1501706 (2015)CrossRef
    16.Blume, G., Schiemangk, M., Pohl, J., Feise, D., Ressel, P., Sumpf, B., Wicht, A., Paschke, K.: Narrow linewidth of 633-nm DBR ridge-waveguide lasers. IEEE Photonics Technol. Lett. 25(6), 550–552 (2013)CrossRef ADS
    17.Feise, D., Fiebig, C., Blume, G., Pohl, J., Eppich, B., Paschke, K.: High-power, red-emitting DBR-TPL for possible 3D holographic or volumetric displays. Advances in display technologies III. Proc. SPIE 8643(8643–07), 1–9 (2013)
    18.Feise, D., John, W., Bugge, F., Fiebig, C., Blume, G., Paschke, K.: High-spectral-radiance, red-emitting tapered diode lasers with monolithically integrated distributed Bragg reflector surface gratings. Opt. Express 20, 23374–23382 (2012)CrossRef ADS
    19.Blume, G., Pohl, J., Feise, D., Jendrzejewski, M., Greiner, M., Ressel, P., Paschke, K.: Single-mode master-oscillator power amplifier at 647 nm with more than 500 mW output power. Opt. Lett. 40(8), 1757–1759 (2015)CrossRef ADS
  • 作者单位:Katrin Paschke (1)
    Gunnar Blume (1)
    David Feise (1)
    Johannes Pohl (1)
    Bernd Sumpf (1)

    1. Ferdinand-Braun-Institut, Leibniz-Institut für Höchstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489, Berlin, Germany
  • 刊物类别:Physics and Astronomy
  • 刊物主题:Physics
    Electromagnetism, Optics and Lasers
  • 出版者:The Optical Society of Japan, co-published with Springer-Verlag GmbH
  • ISSN:1349-9432
文摘
Red-emitting lasers for display applications require high output powers and a high visibility. We demonstrate diode lasers and modules in the red spectral range based on AlGaInP with optical output powers up to 1 W and a nearly diffraction limited beam. These high-luminance light sources based on tapered lasers are well suited for laser TVs and projectors for virtual reality simulators based on the flying spot technology. Additionally, we developed diode lasers with internal distributed Bragg reflector (DBR) surface gratings. These DBR tapered lasers and master-oscillator power-amplifiers based on DBR ridge-waveguide lasers and tapered amplifiers feature high power, single mode emission with coherence lengths up to several meters, which are suitable for the next-generation 3D displays based on holography. Keywords Tapered diode laser Distributed Bragg reflection Master oscillator power amplifier Flying spot Hologram 3D display Red-emitting laser sources Brightness

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