Publications

Displaying 16 publications
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Journal Article

  1. R. Ramesh, T. Hsieh, A. M. Skipper, Q. Meng, K. C. Wen, F. Shafiei, M. A. Wistey, M. C. Downer, J. B. Khurgin, and S. R. Bank, "Interband second-order nonlinear optical susceptibility of asymmetric coupled quantum wells," Applied Physics Letters, vol. 123, no. 25, Dec 2023. Digital object identifier
  2. N. D. Foster, A. K. Rockwell, J. A. McArthur, B. S. Mendoza, S. R. Bank, and M. C. Downer, "A Study of Second-Order Susceptibility in Digital Alloy-Grown InAs/AlSb Multiple Quantum Wells," Advanced Optical Materials, vol. 10, no. 2192845, May 2022. Digital object identifier
  3. K. Chen, X. Meng, F. He, Y. Zhou, J. Jeong, N. T. Sheehan, S. R. Bank, and Y. Wang, "Comparison between Grating Imaging and Transient Grating Techniques on Measuring Carrier Diffusion in Semiconductor," Nanoscale and Microscale Thermophysical Engineering, vol. 22, no. 4, pp. 348-359, Aug 2018. Digital object identifier
  4. J. Jeong, K. Chen, E. S. Walker, N. Roy, F. He, P. Liu, G. Willson, M. Cullinan, S. R. Bank, and Y. Wang, "In-Plane Thermal Conductivity Measurement with Nanosecond Grating Imaging Technique," Nanoscale and Microscale Thermophysical Engineering, vol. 22, no. 2, pp. 83-96, Dec 2017. Digital object identifier
  5. K. Chen, N. T. Sheehan, F. He, X. Meng, S. C. Mason, S. R. Bank, and Y. Wang, "Measurement of Ambipolar Diffusion Coefficient of Photoexcited Carriers with Ultrafast Reflective Grating-Imaging Technique," ACS Photonics, vol. 4, pp. 1440-1446, May 2017. Digital object identifier
  6. K. Chen, M. N. Yogeesh, Y. Huang, S. Zhang, F. He, X. Meng, S. Fang, N. T. Sheehan, T. H. Tao, S. R. Bank, J. Lin, D. Akinwande, P. Sutter, T. Lai, and Y. Wang, "Non-destructive measurement of photoexcited carrier transport in graphene with ultrafast grating imaging technique," Carbon, vol. 107, pp. 233-239, Oct 2016. Digital object identifier
  7. S. R. Bank, H. B. Yuen, H. P. Bae, M. A. Wistey, A. Moto, and J. S. Harris, "Enhanced luminescence in GaInNAsSb quantum wells through variation of the arsenic and antimony fluxes," APL, vol. 88, no. 24, pp. 241923, Jun 2006. Digital object identifier
  8. 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

Conference Paper

  1. N. D. Foster, A. K. Rockwell, J. A. McArthur, M. Santoyo, S. R. Bank, and M. C. Downer, "Measurement of chi(2) of III-V quantum well structures," Bulletin of the American Physical Society, Mar 2021.
  2. N. D. Foster, A. K. Rockwell, S. R. Bank, and M. C. Downer, "Analysis of chi(2) of III-V quantum-well structures using transfer matrix techniques," American Physical Society March Meeting (APS), Denver, CO, Mar 2020.
  3. J. Jeong, K. Chen, E. S. Walker, S. R. Bank, and Y. Wang, "Nanosecond Grating Imaging Technique for Measuring Thermal Transport Properties," 59th Electronic Materials Conf. (EMC), South Bend, IN, Jun 2017.
  4. K. Chen, D. Akinwande, S. R. Bank, and Y. Wang, "A Novel Optical Grating Technique to Measure Photo-Excited Carrier Transport Property in Electronic Materials," 58th Electronic Materials Conf. (EMC), Newark, DE, Jun 2016.
  5. K. Chen, Y. Wang, D. Akinwande, S. R. Bank, and J. Lin, "A novel grating-imaging method to measure carrier diffusion coefficient in graphene," American Physical Society (APS) March Meeting, Baltimore, MD, Mar 2016.
  6. H. B. Yuen, S. R. Bank, M. A. Wistey, H. P. Bae, J. S. Harris, and A. Moto, "Effects of N2 Flow on GaInNAs Grown by a RF Plasma cell in MBE," Materials Research Symposium (MRS), San Franciso, CA, Apr 2004.
  7. H. B. Yuen, V. Lordi, S. R. Bank, M. A. Wistey, J. S. Harris, and A. Moto, "Analysis of Material Properties of GaNAs(Sb) Grown by MBE," Materials Research Symposium (MRS), Boston, MA, Dec 2003.
  8. H. B. Yuen, S. R. Bank, M. A. Wistey, A. Moto, and J. S. Harris, "An Investigation of GaNAs(Sb) for Strain Compensated Active Regions at 1. 3 and 1. 55 \µm," 45th Electronic Materials Conf. (EMC), Salt Lake City, UT, Jun 2003.