Marek S. Wartak
Affiliations: | University of Waterloo, Waterloo, ON, Canada |
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Optics PhysicsGoogle:
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Publications
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Gladysiewicz M, Kudrawiec R, Wartak MS. (2016) Electronic band structure and material gain of III-V-Bi quantum wells grown on GaSb substrate and dedicated for mid-infrared spectral range Journal of Applied Physics. 119: 75701 |
Gladysiewicz M, Kudrawiec R, Wartak MS. (2014) Theoretical studies of optical gain tuning by hydrostatic pressure in GaInNAs/GaAs quantum wells Journal of Applied Physics. 115: 33515 |
Miloszewski JM, Wartak MS, Wallace SG, et al. (2013) Theoretical investigation of carrier capture and escape processes in cylindrical quantum dots Journal of Applied Physics. 114 |
Gladysiewicz M, Kudrawiec R, Miloszewski JM, et al. (2013) Band structure and the optical gain of GaInNAs/GaAs quantum wells modeled within 10-band and 8-band kp model Journal of Applied Physics. 113: 63514 |
Miloszewski JM, Wartak MS. (2012) Semiconductor laser simulations using non-equilibrium Green’s functions Journal of Applied Physics. 111: 53104 |
Miloszewski JM, Wartak MS, Weetman P, et al. (2009) Analysis of linewidth enhancement factor for quantum well structures based on InGaAsN/GaAs material system Journal of Applied Physics. 106: 63102 |
Weetman P, Wartak MS. (2006) Advanced Approach to Modelling Quantum Well Semiconductor Lasers Based on the Quantum Boltzmann Equation: Green's Function Approach Journal of Computational and Theoretical Nanoscience. 3: 463-478 |
Weetman P, Wartak MS. (2003) Wigner function modeling of quantum well semiconductor lasers using classical electromagnetic field coupling Journal of Applied Physics. 93: 9562-9575 |
Weetman P, Kucharczyk M, Wartak M. (2002) Effect of well coupling on the TE optical modal gain in quantum-well-based semiconductor lasers Journal of Physics: Condensed Matter. 14 |
Kucharczyk M, Wartak MS, Weetman P, et al. (1999) Theoretical modeling of multiple quantum well lasers with tunneling injection and tunneling transport between quantum wells Journal of Applied Physics. 86: 3218-3228 |