Faculty: Can E. Korman
 
Can E. Korman
DEPARTMENT CHAIR

 
  Research
Selected Publications
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Research

My research interests are in the areas of microelectronics, VLSI, magnetics, numerical modeling, and digital signal processing. Current research projects are in the areas of noise in semiconductor devices, micro-electro-mechanical systems (MEMS) and magnetic aftereffect.

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Selected Publications

  • Mohd Yasin, F., C. Korman and D. Nagel, “Measurement of Noise Characteristics of MEMS Accelerometers,” accepted for publication in the Solid-State Electronics, 2002.
  • Korman, C., “Dynamic Approximation of Rectangular Loops and Aftereffect,” accepted for publication in the IEEE Trans. Magn., 2003
  • Korman, C., “Dynamic Approximation of Rectangular Loops and Aftereffect,” International Magnetics Conference, Boston, MA, April 2003.
  • Ahmadi, S., C. Korman, M. Zaghloul and K. Huang, “CMOS Integrated Gas Sensor Chip Using SAW Technology,” ISCAS 2003, Bangkok, Thailand, May 2003.
  • Melkonyan, S., V. Aroutiounian, F. Gasparyan and C. Korman, “Pecularities of Relaxation of Distribution Function Fluctuation of Long-Wave Electrons in Equilibrium Semiconductors,” submitted to the Fluctuation and Noise Letters, 2002.
  • Melkonyan, S., V. Aroutiounian, F. Gasparayan and C. Korman, “Slow Damping of Electron Distribution Function Fluctuation in Equilibrium Semiconductors,” submitted to the Fluctuation and Noise Letters, 2002.
  • C. E. Korman, R. Barry and U. C. Kozat, "On Binary Detection with Hysteresis,"  SIAM Journal on. Applied Mathematics, Vol. 62, No. 5, pp. 1794-1809, 2002.
  • C. E. Korman, A. A. Adly, I. D. Mayergoyz and P. Rugkwamsook, "A Model for Magnetic Aftereffect in the Presence of Time Varying Demagnetizing Fields," IEEE Trans. on Magnetics, Vol. 36, No. 5, p. 3182, September 2000.
  • C. E. Korman and E. Della Torre, "Definition of the Magnetic Ground State Using Preisach-Based Aftereffect Models," Physica B, 275, pp. 28-33, 2000.
  • A. J. Piazza, C. E. Korman and A. M. Jaradeh, "A Physics-Based Semiconductor Noise Model Suitable for Efficient Numerical Implementation," IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, Vol. 18, No. 12, pp. 1730-1740, December 1999.

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Professor of Engineering and
Applied Science

Room 611 Phillips Hall
Phone: 202 994-4952, Fax: 202 994-0227
korman@gwu.edu


B.S. 1985, M.S. 1987
and Ph.D. 1990
The University of Maryland at College Park