Publications

Displaying 7 publications
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Journal Article

  1. J. A. McArthur, A. A. Dadey, K. Circir, S. D. March, X. Xue, D. Chen, A. H. Jones, A. Dolocan, J. C. Campbell, and S. R. Bank, "Source impurity contributions and polarity inverting in the unintentional doping of AlInAsSb digital alloys grown via molecular beam epitaxy," Crystal Growth & Design, vol. 25, no. 2, pp. 392-399, Dec 2024. Digital object identifier
  2. J. K. Saha, S. A. A. Taqy, P. K. Sarkar, I. Rahaman, A. W. Arbogast, T. Dey, A. Dolocan, M. R. R. Munna, K. Alam, D. Wasserman, S. R. Bank, and M. A. Wistey, "Observation of low-resistance Al and Ni p-type ohmic contacts to dilute GeC and GeCSn alloys," J. Vac. Sci. Technol. B, vol. 42, no. 6, pp. 062211, Nov 2024. Digital object identifier
  3. D. J. Ironside, A. M. Skipper, T. A. Leonard, M. Radulaski, T. Sarmiento, P. Dhingra, M. L. Lee, J. Vuckovic, and S. R. Bank, "High-quality GaAs planar coalescence over embedded dielectric microstructures using an all-MBE approach," Crystal Growth and Design, vol. 19, no. 6, pp. 3085-3091, Apr 2019. Digital object identifier
  4. A. Majumdar, A. Rundquist, M. Bajcsy, V. D. Dasika, S. R. Bank, and J. Vuckovic, "Design and analysis of photonic crystal coupled cavity arrays for quantum simulation," Phys. Rev. B, vol. 86, pp. 195312, Nov 2012. Digital object identifier
  5. J. Fu, S. R. Bank, M. A. Wistey, H. B. Yuen, and J. S. Harris, "Solid-source molecular-beam epitaxy growth of GaInNAsSb/InGaAs single quantum well on InP with photoluminescence peak wavelength at 2. 04 \µm," J. Vac. Sci. Technol. B, vol. 22, no. 3, pp. 1463-1467, May 2004. Digital object identifier

Conference Paper

  1. A. Rundquist, A. Majumdar, M. Bajcsy, V. D. Dasika, S. R. Bank, and J. Vuckovic, "Photonic crystal coupled cavity arrays for quantum simulation," Conf. on Lasers and Electro Optics (CLEO), San Jose, CA, Jun 2013.
  2. J. Fu, S. R. Bank, M. A. Wistey, H. B. Yuen, and J. S. Harris, "Solid-Source Molecular-Beam Epitaxy Growth of GaInNAsSb/InGaAs Single Quantum Well on InP with Photoluminescence Peak Wavelength at 2. 04 \µm," North American Molecular Beam Epitaxy Conf. (NAMBE), Keystone, CO, Sep 2003.