Publications and conferences
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M. Dems, W. Nakwaski, Modelling of High-Contrast Photonic Crystal Slabs Using the Novel Extension of the Effective Index Method, Opt. Appl. 36, 51-56, 2006
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T. Czyszanowski, W. Nakwaski, Usability limits of the scalar effective frequency method used to determine modes distributions in oxide-confined vertical-cavity surface-emitting diode lasers., J. Phys. D: Appl. Phys. 39, 30-35, 2006
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M. Ziegler, F. Weik, J. W. Tomm, T. Elsaesser, W. Nakwaski, R. Sarzała, D. Lorenzen, J. Meusel, A. Kozłowska, Transient thermal properties of high- power diode laser bars., Appl. Phys. Lett. 89, 263506, 2006
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R. Sarzała, W. Nakwaski, Separate-confinement-oxidation vertical-cavity surface-emitting laser structure., J. Appl. Phys. 99 s.123110-1(9), 2006
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T. Czyszanowski, W. Nakwaski, Usability limits of the scalar effective frequency method used to determine modes distributions in oxide-confined vertical-cavity surface-emitting diode lasers, J. Phys. D: Appl. Phys. 39(1), 30-35, 2005
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R. Sarzała, W. Nakwaski, Methods to enhance mode selectivity of higher-output vertical-cavity surface-emitting diode lasers, SPIE Proceedings, Poland, 28 Aug-02 Sep 2005
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D. Wawer, T. J. Ochalski, K. Pierściński, M. Szymański, M. Bugajski, Ł. Piskorski, K. Gutowski, A. Kozłowska, A. Maląg, Analysis of Facet Heating in Semiconductor Lasers, Proceedings of SPIE/Ukraine, vol. 6 (1-6), 2006, pp. 6 - 76–82, September 2005
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R. Sarzała, Designing strategy to enhance mode selectivity of higher-output oxide-confined vertical-cavity surface-emitting lasers, Applied Physics A: Materials Science and Processing 81(2), 275-283, 2005
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J. Galczak, R. Sarzała, W. Nakwaski, The modified k·p method to investigate polarization effects in nitride quantum-well devices, Physica E: Low-Dimensional Systems and Nanostructures 25(4), 504-514, 2005
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M. Dems, R. Kotyński, K. Panajotov, Plane Wave Admittance Method - a novel approach for determining the electromagnetic modes in photonic structures, Opt. Express 13(9), 3196, 2005
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R. Sarzała, An impact of a localization of an oxide aperture within a VCSEL cavity on its lasing threshold., Opt. Appl. 35(no. 3), 636-644, 2005
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W. Nakwaski, Simplified modelling of photonic-crystal-confined vertical-cavity surface-emitting diode lasers., Opt. Appl. 35, 579-589, 2005
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R. Sarzała, Physical analysis of an operation of GaInAs/GaAs quantum-well vertical-cavity surface-emitting diode lasers emitting in the 1.3mm wavelength range., Opt. Appl. 35(no. 2), 225-240, 2005
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M. Wasiak, M. Bugajski, W. Nakwaski, Envelope function description of quantum cascade laser electronic states., Opt. Appl. 35, 651-654, 2005
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M. Dems, K. Panajotov, T. Czyszanowski, R. Kotyński, W. Nakwaski, Simulation of photonic crystal diode lasers with plane-wave admittance method, European Symposium on Photonic Crystals, 2005
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M. Dems, R. Kotyński, K. Panajotov, PlaneWave Admittance Method- a novel approach for determining the electromagnetic modes in photonic structures, Opt. Express 13, 3196-3207, 2005
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J. Galczak, R. Sarzała, W. Nakwaski, The modified kp approach to investigate polarization effects in nitride quantum-well devices., Physica E: Low-Dimensional Systems and Nanostructures 25, 504-514, 2005
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R. Sarzała, W. Nakwaski, Optimisation of GaAs-based (GaIn)(NAs)//GaAs vertical-cavity surface-emitting diode lasers for high-temperature operation in 1.3-μm optical-fibre communication systems, IEE P. - Optoelectron. 151(5), 417-420, 2004
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R. P. S. a, W. Nakwaski, Optimization of 1.3 µm GaAs-based oxide-confined (GaIn)(NAs) vertical-cavity surface-emitting lasers for low-threshold room-temperature operation, Journal of Physics Condensed Matter 16(31), S3121-S3140, 2004
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T. Czyszanowski, M. Dems, W. Nakwaski, Usability Comparison of Scalar and Vectorial Optical Approaches To Simulation of a 1.3μm InGaAsN VCSEL Operation, 6th International Conference on Transparent Optical Networks, pp. 1 - 375-376, July 2004
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