Publications

Displaying 7 publications
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Journal Article

  1. D. Wei, B. Gao, A. A. Dadey, J. A. McArthur, J. Bai, S. R. Bank, and J. C. Campbell, "Broadband Quantum Efficiency Enhancement of AlInAsSb p–i–n Photodiodes with All-Dielectric Amorphous Germanium Metasurfaces," Adv. Phot. Res., Jun 2024. Digital object identifier
  2. D. Chen, S. D. March, A. H. Jones, Y. Shen, A. A. Dadey, K. Sun, J. A. McArthur, A. M. Skipper, X. Xue, B. Guo, J. Bai, S. R. Bank, and J. C. Campbell, "Photon-trapping-enhanced avalanche photodiodes for mid-infrared applications," Nature Photonics, May 2023. Digital object identifier
  3. M. M. Oye, T. J. Mattord, G. A. Hallock, S. R. Bank, M. A. Wistey, J. M. Reifsnider, A. J. Ptak, H. B. Yuen, J. S. Harris, and A. L. Holmes Jr., "Effects of different plasma species (atomic N, metastable N2*, and ions) on the optical properties of dilute nitride materials grown by plasma-assisted molecular-beam epitaxy," APL, vol. 91, no. 19, pp. 191903, Sep 2007. Digital object identifier
  4. 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

Conference Paper

  1. B. D. Aguilar, A. M. García, A. M. Skipper, D. J. Ironside, and S. R. Bank, "Effects of Molecular Beam Epitaxy Selective Area Growth Techniques on III-V Optical Quality," 66th Electronic Materials Conf. (EMC), College Park, Maryland, Jun 2024.
  2. A. M. García, B. D. Aguilar, W. J. Doyle, Y. Wang, D. J. Ironside, A. M. Skipper, M. K. Bergthold, M. L. Lee, D. Wasserman, and S. R. Bank, "Molecular Beam Epitaxy Selective Area Regrowth of High Aspect Ratio Microstructures for Mid-Infrared Optoelectronics," 66th Electronic Materials Conf. (EMC), College Park, Maryland, Jun 2024.
  3. S. J. Maddox, K. M. Yu, A. J. Ptak, H. P. Nair, V. D. Dasika, and S. R. Bank, "Optical and Structural Characterization of InAsBi and InGaAsBi Grown by Molecular Beam Epitaxy," 55th Electronic Materials Conf. (EMC), South Bend, IN, Jun 2013.