Publications

Displaying 15 publications
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Journal Article

  1. B. Guo, S. Z. Ahmed, X. Xue, A. K. Rockwell, J. Ha, S. Lee, B. Liang, A. H. Jones, J. A. McArthur, S. H. Kodati, T. J. Ronningen, S. Krishna, J. Kim, S. R. Bank, A. W. Ghosh, and J. C. Campbell, "Temperature dependence of avalanche breakdown of AlGaAsSb and AlInAsSb avalanche photodiodes," Journal of Lightwave Technology, Jun 2022. Digital object identifier
  2. R. Wang, J. A. McArthur, S. R. Bank, and J. C. Campbell, "Infrared Al0. 15InAsSb digital alloy NBn photodetectors," Journal of Lightwave Technology, vol. 40, no. 12, pp. 3855, Feb 2022. Digital object identifier
  3. R. Wang, D. Chen, J. A. McArthur, X. Xue, A. H. Jones, S. R. Bank, and J. C. Campbell, "Al0. 3InAsSb/Al0. 7InAsSb Digital Alloy nBn Photodetectors," Journal of Lightwave Technology, vol. 40, no. 1, pp. 113-120, Oct 2021. Digital object identifier
  4. Y. Yuan, A. K. Rockwell, Y. Peng, J. Zheng, S. D. March, A. H. Jones, S. R. Bank, and J. C. Campbell, "Comparison of Different Period Digital Alloy Al0. 7InAsSb Avalanche Photodiodes," Journal of Lightwave Technology, vol. 37, no. 14, pp. 3647-3654, May 2019. Digital object identifier
  5. J. Zheng, Y. Yuan, Y. Tan, Y. Peng, A. K. Rockwell, S. R. Bank, A. W. Ghosh, and J. C. Campbell, "Digital Alloy InAlAs Avalanche Photodiodes," Journal of Lightwave Technology, vol. 36, no. 17, pp. 3580-3585, Sep 2018. Digital object identifier
  6. R. Kudrawiec, H. P. Nair, M. Latkowska, K. Misiewics, S. R. Bank, and W. Walukiewics, "Contactless electroreflectance study of Fermi level pinning on GaSb surface in n-type and p-type GaSb Van Hoof structures," J. Appl. Phys., vol. 112, pp. 123513, Dec 2012. Digital object identifier
  7. R. Kudrawiec, H. B. Yuen, S. R. Bank, H. P. Bae, M. A. Wistey, J. S. Harris, M. Motyka, and J. Misiewicz, "On the Fermi level pinning in as-grown GaInNAs(Sb)/GaAs quantum wells with indium content of 8%\—32%," J. Appl. Phys., vol. 104, no. 3, pp. 033526, Aug 2008. Digital object identifier
  8. R. Kudrawiec, H. B. Yuen, S. R. Bank, H. P. Bae, M. A. Wistey, J. S. Harris, M. Motyka, and J. Misiewicz, "Contactless electroreflectance approach to study the Fermi level position in GaInNAs/GaAs quantum wells," J. Appl. Phys., vol. 102, no. 11, pp. 113501, Dec 2007. Digital object identifier
  9. D. B. Jackrel, S. R. Bank, H. B. Yuen, M. A. Wistey, J. S. Harris, A. J. Ptak, S. W. Johnston, D. J. Friedman, and S. R. Kurtz, "Dilute nitride GaInNAs and GaInNAsSb solar cells by molecular beam epitaxy," J. Appl. Phys., vol. 101, pp. 114916-1, Jun 2007. Digital object identifier
  10. H. B. Yuen, S. R. Bank, H. P. Bae, M. A. Wistey, and J. S. Harris, "The role of antimony on properties of widely varying GaInNAsSb compositions," J. Appl. Phys., vol. 99, no. 9, pp. 093504, Dec 2006. Digital object identifier
  11. L. L. Goddard, S. R. Bank, M. A. Wistey, H. B. Yuen, Z. Rao, and J. S. Harris, "Recombination, gain, band structure, efficiency, and reliability of 1. 5-\µm GaInNAsSb/GaAs lasers," J. Appl. Phys., vol. 97, no. 8, pp. 083101, Apr 2005. Digital object identifier
  12. R. Kudrawiec, H. B. Yuen, K. Ryczko, J. Misiewicz, S. R. Bank, M. A. Wistey, H. P. Bae, and J. S. Harris, "Photoreflectance and photoluminescence investigations of a step-like GaInNAsSb/GaAsN/GaAs quantum well tailored at 1. 5 \µm: The energy level structure and the Stokes shift," J. Appl. Phys., vol. 97, no. 5, pp. 053515, Feb 2005. Digital object identifier
  13. H. B. Yuen, S. R. Bank, M. A. Wistey, J. S. Harris, M. Seong, S. Yoon, R. Kudrawiec, and J. Misiewicz, "Improved optical quality of GaNAsSb in the dilute Sb limit," J. Appl. Phys., vol. 97, no. 11, pp. 113510, Dec 2005. Digital object identifier
  14. J. S. Harris, S. R. Bank, M. A. Wistey, and H. B. Yuen, "GaInNAs(Sb) long wavelength communications lasers," IEE Proc. Optoelectron., vol. 151, no. 5, pp. 407-416, Oct 2004. Digital object identifier
  15. H. B. Yuen, S. R. Bank, M. A. Wistey, J. S. Harris, and A. Moto, "Comparison of GaNAsSb and GaNAs as quantum-well barriers for GaInNAsSb optoelectronic devices operating at 1. 3\—1. 55 \µm," J. Appl. Phys., vol. 96, no. 11, pp. 6375-6381, Dec 2004. Digital object identifier