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[1] G. Schmidt,et al. Diffraction in periodic structures and optimal design of binary gratings. Part I : Direct problems and gradient formulas , 1998 .
[2] J. Homola. Surface plasmon resonance based sensors , 2006 .
[3] Manuel E. Solano,et al. Adequacy of the rigorous coupled-wave approach for thin-film silicon solar cells with periodically corrugated metallic backreflectors: spectral analysis. , 2015, Journal of the Optical Society of America. A, Optics, image science, and vision.
[4] Tom H. Anderson,et al. Efficiency enhancement of ultrathin CIGS solar cells by optimal bandgap grading. , 2019, Applied optics.
[5] Habib Ammari,et al. Maxwell's equations in periodic chiral structures , 2003 .
[6] Akhlesh Lakhtakia,et al. Grating-coupled excitation of multiple surface plasmon-polariton waves , 2011, 1105.5793.
[7] Rüdiger Verfürth,et al. Adaptive finite element methods for elliptic equations with non-smooth coefficients , 2000, Numerische Mathematik.
[8] Emma Previato. Dictionary of Applied Math for Engineers and Scientists , 2003 .
[9] Vivette Girault,et al. Finite Element Methods for Navier-Stokes Equations - Theory and Algorithms , 1986, Springer Series in Computational Mathematics.
[10] W. D. Evans,et al. PARTIAL DIFFERENTIAL EQUATIONS , 1941 .
[11] Andy W. Brown,et al. All-optical switching and routing based on an electromagnetically induced absorption grating. , 2005, Optics letters.
[12] V. A. I︠A︡kubovich,et al. Linear differential equations with periodic coefficients , 1975 .
[13] T. Gaylord,et al. Rigorous coupled-wave analysis of planar-grating diffraction , 1981 .
[14] A. Lakhtakia,et al. Electromagnetic Surface Waves: A Modern Perspective , 2013 .
[15] A. Lakhtakia,et al. Optoelectronic optimization of graded-bandgap thin-film AlGaAs solar cells. , 2020, Applied optics.
[16] Akhlesh Lakhtakia,et al. Optimization of light trapping in ultrathin nonhomogeneous CuIn1-ξGaξSe2 solar cell backed by 1D periodically corrugated backreflector , 2018, NanoScience + Engineering.
[17] C. Eftimiu. Scattering by rough surfaces: A simple model , 1986 .
[18] O. R. Pembery,et al. The Helmholtz equation in heterogeneous media: A priori bounds, well-posedness, and resonances , 2018, Journal of Differential Equations.
[19] A. H. Schatz,et al. An observation concerning Ritz-Galerkin methods with indefinite bilinear forms , 1974 .
[20] Efficiency enhancement of ultrathin CIGS solar cells by optimal bandgap grading: erratum. , 2019, Applied optics.
[21] Akhlesh Lakhtakia,et al. Optimization of nonhomogeneous indium-gallium-nitride Schottky-barrier thin-film solar cells , 2018, Journal of Photonics for Energy.
[22] L. R. Scott,et al. The Mathematical Theory of Finite Element Methods , 1994 .
[23] M. Fuhrer,et al. Solcore: a multi-scale, Python-based library for modelling solar cells and semiconductor materials , 2017, 1709.06741.
[24] Jean-Luc Guermond,et al. Regularity of the Maxwell equations in heterogeneous media and Lipschitz domains , 2013 .
[25] Lifeng Li,et al. Use of Fourier series in the analysis of discontinuous periodic structures , 1996 .
[26] Lynn Marie Anderson. Harnessing Surface Plasmons For Solar Energy Conversion , 1983, Other Conferences.
[27] Shanhui Fan,et al. S4 : A free electromagnetic solver for layered periodic structures , 2012, Comput. Phys. Commun..
[28] Separate and simultaneous investigation of absorption gratings and refractive-index gratings by beam-coupling analysis: comment. , 2006, Journal of the Optical Society of America. A, Optics, image science, and vision.
[29] Akhlesh Lakhtakia,et al. Analysis of the Rigorous Coupled Wave Approach for p-polarized light in gratings , 2019, J. Comput. Appl. Math..
[30] Separate and simultaneous investigation of absorption gratings and refractive-index gratings by beam-coupling analysis , 1993 .
[31] Akhlesh Lakhtakia,et al. Coupled Optoelectronic Simulation and Optimization of Thin-Film Photovoltaic Solar Cells , 2019, J. Comput. Phys..
[32] D. Maystre,et al. Selected papers on diffraction gratings , 1993 .
[33] W. Petryshyn. Constructional Proof of Lax-Milgram lemma and its Application to Non-K-P.D. Abstract and Differential Operator Equations , 1965 .
[34] C. H. Palmer,et al. Parallel diffraction grating anomalies , 1952 .
[35] T. Gaylord,et al. Formulation for stable and efficient implementation of the rigorous coupled-wave analysis of binary gratings , 1995 .
[36] Thomas K. Gaylord,et al. Stable implementation of the rigorous coupled-wave analysis for surface-relief gratings: enhanced transmittance matrix approach , 1995 .
[37] O. Zienkiewicz,et al. Analysis of the Zienkiewicz–Zhu a‐posteriori error estimator in the finite element method , 1989 .
[38] J. Hench. THE RCWA METHOD - A CASE STUDY WITH OPEN QUESTIONS AND PERSPECTIVES OF ALGEBRAIC COMPUTATIONS , 2008 .
[39] Willy Dörfler,et al. Photonic Crystals: Mathematical Analysis and Numerical Approximation , 2011 .
[40] Haijun Wu,et al. An Adaptive Finite Element Method with Perfectly Matched Absorbing Layers for the Wave Scattering by Periodic Structures , 2003, SIAM J. Numer. Anal..
[41] John A. DeSanto. Scattering by Rough Surfaces , 2002 .
[42] D. Gilbarg,et al. Elliptic Partial Differential Equa-tions of Second Order , 1977 .
[43] H. Kogelnik. Coupled wave theory for thick hologram gratings , 1969 .
[44] P. Lalanne,et al. Highly improved convergence of the coupled-wave method for TM polarization and conical mountings , 1996, Diffractive Optics and Micro-Optics.
[45] Armin Lechleiter,et al. A variational method for wave scattering from penetrable rough layers , 2010 .
[46] E. Loewen,et al. Diffraction Gratings and Applications , 2018 .
[47] Peter Monk,et al. The mathematics of scattering by unbounded, rough, inhomogeneous layers , 2007 .