Publications

Displaying 16 publications
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Journal Article

  1. 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
  2. H. S. Maczko, R. H. El-Jaroudi, J. Kopaczek, S. R. Bank, and R. Kudrawiec, "Photoreflectance studies of the band gap alignments in boron diluted BGaInAs/GaAs quantum wells," Optical Materials Express, vol. 12, no. 8, pp. 3118-3131, Dec 2022. Digital object identifier
  3. S. D. March, A. H. Jones, J. C. Campbell, and S. R. Bank, "Multistep staircase avalanche photodiodes with extremely low noise and deterministic amplification," Nature Photonics, pp. 1-7, May 2021. Digital object identifier
  4. R. Maiti, C. Patil, M. A. S. R. Saadi, T. Xie, J. G. Azadani, B. Uluutku, R. Amin, A. F. Briggs, M. Miscuglio, D. Van. Thourhout, S. D. Solares, T. Low, R. Agarwal, S. R. Bank, and V. J. Sorger, "Strain-engineered high-responsivity MoTe2 photodetector for silicon photonic integrated circuits," Nature Photonics, Jun 2020. Digital object identifier
  5. A. H. Jones, S. D. March, S. R. Bank, and J. C. Campbell, "Low-noise high-temperature AlInAsSb/GaSb avalanche photodiodes for 2-\&microm applications," Nature Photonics, no. 14, pp. 559–563, May 2020. Digital object identifier
  6. 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
  7. Y. Xin, .C . Y. Lin, Y. Li, H. P. Bae, H. B. Yuen, M. A. Wistey, J. S. Harris, S. R. Bank, and L. F. Lester, "Monolithic 1. 55 \µm GaInNAsSb quantum well passively modelocked lasers," Electron. Lett., vol. 44, no. 9, pp. 581-582, Apr 2008. Digital object identifier
  8. M. A. Wistey, S. R. Bank, H. P. Bae, H. B. Yuen, E. R. Pickett, L. L. Goddard, and J. S. Harris, "GaInNAsSb/GaAs vertical cavity surface emitting lasers at 1534 nm," Electron. Lett., vol. 42, no. 5, pp. 282-283, Mar 2006. Digital object identifier
  9. S. R. Bank, H. P. Bae, H. B. Yuen, M. A. Wistey, L. L. Goddard, and J. S. Harris, "Room-temperature continuous-wave 1. 55 \µm GaInNAsSb laser on GaAs," Electron. Lett., vol. 42, no. 3, pp. 156-157, Feb 2006. Digital object identifier
  10. D. Gollub, M. Kamp, A. Forchel, J. Seufert, S. R. Bank, M. A. Wistey, H. B. Yuen, L. L. Goddard, and J. S. Harris, "Continuous-wave operation of GaInNAsSb distributed feedback lasers at 1. 5 \µm," Electron. Lett., vol. 40, no. 23, pp. 1487-1488, Nov 2004. Digital object identifier
  11. S. R. Bank, M. A. Wistey, L. L. Goddard, H. B. Yuen, H. P. Bae, and J. S. Harris, "High-performance 1. 5 \µm GaInNAsSb lasers grown on GaAs," Electron. Lett., vol. 40, no. 19, pp. 1186-1187, Sep 2004. Digital object identifier
  12. M. A. Wistey, S. R. Bank, H. B. Yuen, L. L. Goddard, and J. S. Harris, "Monolithic, GaInNAsSb VCSELs at 1. 46 \µm on GaAs by MBE," Electron. Lett., vol. 39, no. 25, pp. 1822-1823, Dec 2003. Digital object identifier
  13. S. R. Bank, M. A. Wistey, H. B. Yuen, L. L. Goddard, W. Ha, and J. S. Harris, "Low-threshold CW GaInNAsSb/GaAs laser at 1. 49 \µm," Electron. Lett., vol. 39, no. 20, pp. 1445-1446, Oct 2003. Digital object identifier
  14. W. Ha, V. Gambin, M. A. Wistey, S. R. Bank, H. B. Yuen, S. Kim, and J. S. Harris, "Long wavelength GaInNAsSb/GaNAsSb multiple quantum well lasers," Electron. Lett., vol. 38, no. 6, pp. 277-278, Mar 2002. Digital object identifier
  15. T. Chung, S. R. Bank, and K. Chien. Hsieh, "High DC current gain InGaP/GaAs HBTs grown by LP-MOCVD," Electron. Lett., vol. 36, no. 22, pp. 1885-1886, Oct 2000. Digital object identifier

Conference Paper

  1. S. D. Sifferman, A. F. Briggs, S. J. Maddox, H. P. Nair, and S. R. Bank, "Highly strained, high indium content III-V materials toward 4-micron type-I emitters," Optical Materials Express, 62nd Electronic Materials Conf. (EMC), Columbus, OH, Jun 2020.