Finite Element Method and Magnetic Sensors
  1. ''Finite Element Modeling of Enhanced Magnetoresistance in Thin Film Semiconductors with Metallic Inclusions,'' J. Moussa, L. R. Ram-Mohan, J. Sullivan, T. Zhou, D. R. Hines, and S. A. Solin, Physical Review B 64, 184410-184418 (2001).).
  2. ''Response of an extraordinary magnetoresistance read-head to a magnetic bit,'' J. Moussa, L. R. Ram-Mohan, A. C. H. Rowe, and S. A. Solin, Journal of Applied Physics 94, 1110-1114 (2003).
  3. "Extraordinary Optoconductance in Semiconductor-Metal Hybrid Structures," K. Wieland, Y. Wang, L. R. Ram-Mohan, S. A. Solin, and A. M. Girgis, Applied Physics Letters 88, 052105-052108 (2005).
  4. ''Experimental Measurement and Finite Element Modeling of Extraordinary Optoconductance in GaAs-In Metal-Semiconductor Hybrid Structures,'' K. Wieland, Y. Wang, S. A. Solin, A. M. Girgis, and L. R. Ram-Mohan, Physical Review B 73, 155305-155312 (2006).
  5. ''Extraordinary Optoconductance in In-GaAs and In-InSb Metal-Semiconductor Hybrid Structures,'' K. A. Wieland, Yun Wang, S. A. Solin, A. M. Girgis, and L. R. Ram Mohan, 28th International Conference on the Physics of Semiconductors, Vienna, Austria, AIP conf. Proc. 893, 1465 (2007).
  6. INVITED REVIEW ARTICLE: "Geometry-driven Magnetoresistance," S. A. Solin and L. R. Ram-Mohan, in The Handbook of Magnetism and Advanced Magnetic Materials, edited by H. Kronmuller and S. Parkin, Volume 5: Spintronics and Magnetoelectronics, pp 1-21 (J. Wiley, New York, 2007).
  7. ''Optimizing the Physical Contribution to the Sensitivity and Signal-to-Noise Ratio of Extraordinary Magnetoresistance Quantum Well Structures,'' Y. Shao, S. A. Solin, L. R. Ram-Mohan and K. H. Yoo, Journal of Applied Physics 101, 123704-123712 (2007). Erratum for the above paper: Y. Shao, S. A. Solin, L. R. Ram-Mohan, and Keon-Ho Yoo [J. Appl. Phys. 101, 123704 (2007)]  J. Appl. Phys. 102, 099901 (2007).
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Center for Computational NanoScience (CCNS)
Wavefunction Engineering

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L. Ramdas Ram-Mohan

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