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Articles

Investigation of Near Field Intensity in GAN MQW in 300–375 Nanometer Wavelength Ranges

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Pages 1122-1130 | Published online: 03 Apr 2012

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Y.-C. Yao, M.-T. Tsai, Y.-J. Lee, Y.-C. Chen & C.-J. Wu. (2011) Dependence of Efficiency-Droop Effect on the Location of High Indium Layer in Staggered InGaN Quantum Wells. Journal of Electromagnetic Waves and Applications 25:17-18, pages 2442-2453.
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H. Badhane, E. P. Samuel & D. S. Patil. (2009) Peak Optical Gain at 377 Nanometer and Near Field Intensity in Zinc Oxide Based Quantum Wells Using Electromagnetic Theory. Journal of Electromagnetic Waves and Applications 23:2-3, pages 351-359.
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Articles from other publishers (4)

K. Maji, K. Mukherjee, Ashif Raja & J. N. Roy. (2020) Numerical simulations of an all-optical parity generator and checker utilizing a reflective semiconductor optical amplifier at 200 Gbps. Journal of Computational Electronics 19:2, pages 800-814.
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Jian-Xiao Liu, Lu Ju, Ling-Hui Meng, Yu-Jie Liu, Zhi-Gang Xu & Hong-Wei Yang. (2018) FDTD method for the scattered-field equation to calculate the radar cross-section of a three-dimensional target. Journal of Computational Electronics 17:3, pages 1013-1018.
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D.S. Patil, Kanchan Talele, E.P. Samuel & Ulhas S. Sonawane. (2016) Self-consistent analysis of electron transport in GaN/AlGaN super lattice nanostructure for light emission. Optik 127:18, pages 7374-7381.
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Kanchan Talele & Dyneshwar Shaligram Patil. (2008) ANALYSIS OF WAVE FUNCTION, ENERGY AND TRANSMISSION COEFFICIENTS IN GaN/ALGaN SUPERLATTICE NANOSTRUCTURES. Progress In Electromagnetics Research 81, pages 237-252.
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