Publications

Displaying 18 publications
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Journal Article

  1. D. Wei, S. J. Maddox, P. Sohr, S. R. Bank, and S. Law, "Enlarged growth window for plasmonic silicon-doped InAs using a bismuth surfactant," Optical Materials Express, vol. 10, no. 2, pp. 302-311, Feb 2020. Digital object identifier
  2. J. Park, J. Kang, X. Liu, S. J. Maddox, K. Tang, P. C. McIntrye, S. R. Bank, and M. L. Brongersma, "Dynamic thermal emission control with InAs-based plasmonic metasurfaces," Science Advances, vol. 4, no. 12, Dec 2018. Digital object identifier
  3. E. M. Krivoy, A. P. Vasudev, S. Rahimi, R. A. Synowicki, K. M. McNicholas, D. J. Ironside, R. Salas, G. Kelp, D. Jung, H. P. Nair, G. Shvets, D. Akinwande, M. L. Lee, M. L. Brongersma, and S. R. Bank, "Rare-earth monopnictide alloys for tunable, epitaxial, designer plasmonics," ACS Photonics, vol. 5, pp. 3051-3056, Jul 2018. Digital object identifier
  4. 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
  5. 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
  6. R. Kudrawiec, S. R. Bank, H. B. Yuen, H. P. Bae, M. A. Wistey, L. L. Goddard, J. S. Harris, M. Gladysiewicz, M. Motyka, and J. Misiewicz, "Conduction band offset for Ga0. 62In0. 38NxAs0. 991 - xSb0. 009/GaNyAs1 - y/GaAs systems with the ground state transition at 1. 5-1. 65 \µm," APL, vol. 90, no. 13, pp. 131905, Mar 2007. 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, "Fermi level shift in GaInNAsSb/GaAs quantum wells upon annealing studied by contactless electroreflectance," APL, vol. 90, no. 6, pp. 061902, Feb 2007. Digital object identifier
  8. R. Kudrawiec, H. B. Yuen, M. Motyka, M. Gladysiewicz, J. Misiewicz, S. R. Bank, H. P. Bae, M. A. Wistey, and J. S. Harris, "Contactless electroreflectance of GaInNAsSb∕GaAs single quantum wells with indium content of 8%–32%," J. of Appl. Phys., vol. 101, no. 1, pp. 013504, Jan 2007. Digital object identifier
  9. R. Kudrawiec, M. Motyka, M. Gladysiewicz, J. Misiewicz, H. B. Yuen, S. R. Bank, H. P. Bae, M. A. Wistey, and J. S. Harris, "Band gap discontinuity in Ga0. 9In0. 1N0. 027As0. 973 - xSbx/GaAs single quantum wells with 0 ≤ x < 0. 06 studied by contactless electroreflectance spectroscopy," APL, vol. 88, no. 22, pp. 221113, May 2006. Digital object identifier

Conference Paper

  1. A. M. Skipper, D. J. Ironside, Y. Fang, J. van. de Groep, J. Song, P. Dhingra, M. L. Lee, M. L. Brongersma, M. J. Rodwell, and S. R. Bank, "Epitaxial Integration of Arbitrarily Patterned Metal Nanostructures for Photonic Applications," 61st Electronic Materials Conf. (EMC), Ann Arbor, MI, Jun 2019.
  2. S. D. Sifferman, M. Motyka, A. F. Briggs, K. J. Underwood, K. M. McNicholas, R. Kudrawiec, J. T. Gopinath, and S. R. Bank, "Dilute-Bismide Alloys for GaSb-based Mid-Infrared Semiconductor Lasers," Conf. on Lasers and Electro Optics (CLEO), San Jose, CA, May 2018.
  3. S. J. Maddox, A. P. Vasudev, V. D. Dasika, S. D. March, M. L. Brongersma, and S. R. Bank, "Effects of Growth Rate, Substrate Temperature, and a Bi Surfactant on Doping Limits in InAs:Si Grown by Molecular Beam Epitaxy," 56th Electronic Materials Conf. (EMC), Santa Barbara, CA, Jun 2014.
  4. S. J. Maddox, A. P. Vasudev, V. D. Dasika, M. L. Brongersma, and S. R. Bank, "Exploring the Limits of Silicon Doping in InAs for Mid-Infrared Plasmonics," North American Molecular Beam Epitaxy Conf. (NAMBE), Banff, Alberta, Canada, Oct 2013.
  5. E. M. Krivoy, A. P. Vasudev, H. P. Nair, V. D. Dasika, R. A. Synowicki, R. Salas, S. J. Maddox, M. L. Brongersma, and S. R. Bank, "Tunable, Epitaxial, Semimetallic Films for Plasmonics," Conf. on Lasers and Electro Optics (CLEO), San Jose, CA, Jun 2013.
  6. A. P. Vasudev, S. J. Maddox, J. Kang, S. R. Bank, and M. L. Brongersma, "Tunable Mid-infrared Semiconductor Plasmonics," Materials Research Society (MRS) Spring Meeting, San Francisco, CA, Apr 2013.
  7. S. J. Maddox, A. P. Vasudev, V. D. Dasika, M. L. Brongersma, and S. R. Bank, "Bismuth Surfactant-Mediated Epitaxy of Highly Doped InAs for Mid-Infrared Plasmonics," North American Molecular Beam Epitaxy Conf. (NAMBE), Stone Mountain Park, GA, Oct 2012.
  8. A. P. Vasudev, S. J. Maddox, M. L. Brongersma, and S. R. Bank, "Mid-Infrared Surface Plasmons on Epitaxial Semiconductors," Gordon Research Conf., Waterville, ME, Jun 2012.
  9. S. R. Bank, H. P. Bae, H. B. Yuen, M. A. Wistey, L. L. Goddard, J. S. Harris, R. Kudrawiec, M. Gladysiewicz, M. Motyka, and J. Misiewicz, "Low-Threshold Continuous-Wave 1. 55-\µm GaInNAsSb lasers," Conf. on Lasers and Electro Optics (CLEO), Long Beach, CA, May 2006.