S. Basu Mallick, N. P. Sergeant, M. Agrawal, J.-Y. Lee, and P. Peumans, “Coherent light trapping in thin-film photovoltaics,” MRS Bull. 36(6), 453–460 (2011).
M. L. Brongersma, Y. Cui, and S. Fan, “Light management for photovoltaics using high-index nanostructures,” Nat. Mater. 13(5), 451–460 (2014).
F. Priolo, T. Gregorkiewicz, M. Galli, and T. F. Krauss, “Silicon nanostructures for photonics and photovoltaics,” Nat. Nanotechnol. 9(1), 19–32 (2014).
X. Meng, V. Depauw, G. Gomard, O. E. Daif, E. Drouard, C. Jamois, A. Fave, F. Dross, I. Gordon, and C. Seassal, “Design, fabrication and optical characterization of photonic crystal assisted thin film monocrystalline-silicon solar cells,” Opt. Express 20(S4), A465–A475 (2012).
J. D. Joannopoulos, Photonic crystals: molding the flow of light (Princeton University, 2008).
X. Sheng, L. Z. Broderick, and L. C. Kimerling, “Photonic crystal structures for light trapping in thin- fi lm Si solar cells: Modeling, process and optimizations,” Opt. Commun. 314, 41–47 (2014).
R. B. Wehrspohn and J. Üpping, “3D photonic crystals for photon management in solar cells,” J. Opt. 14(2), 024003 (2012).
Y. Tanaka, Y. Kawamoto, M. Fujita, and S. Noda, “Enhancement of broadband optical absorption in photovoltaic devices by band-edge effect of photonic crystals,” Opt. Express 21(17), 20111–20118 (2013).
A. Mihi, M. E. Calvo, J. A. Anta, and H. Mi, “Spectral Response of Opal-Based Dye-Sensitized Solar Cells,” J. Phys. Chem. C 112(1), 13–17 (2008).
A. Mihi and H. Mi, “Origin of Light-Harvesting Enhancement in Colloidal-Photonic-Crystal-Based Dye-Sensitized Solar Cells,” J. Phys. Chem. B 109(33), 15968–15976 (2005).
L. Ha, M. Ocan, B. S. Colodrero, G. Boschloo, and A. Hagfeldt, “Porous One-Dimensional Photonic Crystals Improve the Power-Conversion Efficiency of Dye-Sensitized Solar Cells,” Adv. Mater. 21(7), 764–770 (2009).
G. Lozano, S. Colodrero, O. Caulier, M. E. Calvo, and V. Se, “Theoretical Analysis of the Performance of One-Dimensional Photonic Crystal-Based Dye-Sensitized Solar Cells,” J. Phys. Chem. C 114(8), 3681–3687 (2010).
S. Guldin, S. Huttner, M. Kolle, M. E. Welland, P. Muller-Buschbaum, R. H. Friend, U. Steiner, and N. Tetreault, “Dye-sensitized solar cell based on a three-dimensional photonic crystal,” Nano Lett. 10(7), 2303–2309 (2010).
U. Fano, “Effects of Configuration Interaction on Intensities and Phase Shifts,” Phys. Rev. 124(6), 1866–1878 (1961).
M. F. Limonov, M. V. Rybin, A. N. Poddubny, and Y. S. Kivshar, “Fano resonances in photonics,” Nat. Photonics 11(9), 543–554 (2017).
S. Campione, D. de Ceglia, C. Guclu, M. A. Vincenti, M. Scalora, and F. Capolino, “Fano collective resonance as complex mode in a two-dimensional planar metasurface of plasmonic nanoparticles,” Appl. Phys. Lett. 105(19), 191107 (2014).
N. Sharac, H. Sharma, M. Veysi, R. N. Sanderson, M. Khine, F. Capolino, and R. Ragan, “Tunable optical response of bowtie nanoantenna arrays on thermoplastic substrates,” Nanotechnology 27(10), 105302 (2016).
M. V. Rybin, A. B. Khanikaev, M. Inoue, K. B. Samusev, M. J. Steel, G. Yushin, and M. F. Limonov, “Fano Resonance between Mie and Bragg Scattering in Photonic Crystals,” Phys. Rev. Lett. 103(2), 023901 (2009).
M. F. Limonov and R. M. De La Rue, Optical properties of photonic structures: interplay of order and disorder (CRC, 2012).
Y. A. Vlasov, X.-Z. Bo, J. C. Sturm, and D. J. Norris, “On-chip natural assembly of silicon photonic bandgap crystals,” Nature 414(6861), 289–293 (2001).
M. V. Rybin, K. B. Samusev, I. S. Sinev, G. Semouchkin, E. Semouchkina, Y. S. Kivshar, and M. F. Limonov, “Mie scattering as a cascade of Fano resonances,” Opt. Express 21(24), 30107–30113 (2013).
A. N. Poddubny, M. V. Rybin, M. F. Limonov, and Y. S. Kivshar, “Fano interference governs wave transport in disordered systems,” Nat. Commun. 3(1), 914 (2012).
M. I. Tribelsky and A. E. Miroshnichenko, “Giant in-particle field concentration and Fano resonances at light scattering by high-refractive-index particles,” Phys. Rev. A 93(5), 053837 (2016).
S. E. Han and G. Chen, “Optical Absorption Enhancement in Silicon Nanohole Arrays for Solar Photovoltaics,” Nano Lett. 10(3), 1012–1015 (2010).
S. B. Mallick, M. Agrawal, and P. Peumans, “Optimal light trapping in ultra-thin photonic crystal crystalline silicon solar cells,” Opt. Express 18(6), 5691–5706 (2010).
D. H. Ko, J. R. Tumbleston, L. Zhang, S. Williams, J. M. Desimone, R. Lopez, and E. T. Samulski, “Photonic Crystal Geometry for Organic Solar Cells,” Nano Lett. 9(7), 2742–2746 (2009).
D. Duché, C. Masclaux, J. Le Rouzo, and C. Gourgon, “Photonic crystals for improving light absorption in organic solar cells,” J. Appl. Phys. 117(5), 053108 (2015).
A. Kojima, K. Teshima, T. Miyasaka, and Y. Shirai, “Novel Photoelectrochemical Cell with Mesoscopic Electrodes Sensitized by Lead-Halide Compounds (2),” Meeting Abstracts MA2006-0, 397 (2006).
M. A. Green, Y. Jiang, A. M. Soufiani, and A. Ho-Baillie, “Optical Properties of Photovoltaic Organic–Inorganic Lead Halide Perovskites,” J. Phys. Chem. Lett. 6(23), 4774–4785 (2015).
L. Lang, J.-H. Yang, H.-R. Liu, H. Xiang, and X. Gong, “First-principles study on the electronic and optical properties of cubic ABX3 halide perovskites,” Phys. Lett. A 378(3), 290–293 (2014).
M. Shirayama, H. Kadowaki, T. Miyadera, T. Sugita, M. Tamakoshi, M. Kato, T. Fujiseki, D. Murata, S. Hara, T. N. Murakami, S. Fujimoto, M. Chikamatsu, and H. Fujiwara, “Optical Transitions in Hybrid Perovskite Solar Cells: Ellipsometry, Density Functional Theory, and Quantum Efficiency Analyses for CH 3 NH 3 PbI 3,” Phys. Rev. Appl. 5(1), 014012 (2016).
P. Löper, M. Stuckelberger, B. Niesen, J. Werner, M. Filipič, S.-J. Moon, J.-H. Yum, M. Topič, S. De Wolf, and C. Ballif, “Complex Refractive Index Spectra of CH 3 NH 3 PbI 3 Perovskite Thin Films Determined by Spectroscopic Ellipsometry and Spectrophotometry,” J. Phys. Chem. Lett. 6(1), 66–71 (2015).
S. Schünemann, K. Chen, S. Brittman, E. Garnett, and H. Tüysüz, “Preparation of Organometal Halide Perovskite Photonic Crystal Films for Potential Optoelectronic Applications,” ACS Appl. Mater. Interfaces 8(38), 25489–25495 (2016).
K. Meng, S. Gao, L. Wu, G. Wang, X. Liu, G. Chen, Z. Liu, and G. Chen, “Two-Dimensional Organic–Inorganic Hybrid Perovskite Photonic Films,” Nano Lett. 16(7), 4166–4173 (2016).
B.-X. Chen, H.-S. Rao, H.-Y. Chen, W.-G. Li, D.-B. Kuang, and C.-Y. Su, “Ordered macroporous CH 3 NH 3 PbI 3 perovskite semitransparent film for high-performance solar cells,” J. Mater. Chem. A 4(40), 15662–15669 (2016).
S.-J. Ha, J. H. Heo, S. H. Im, and J. H. Moon, “Mesoscopic CH 3NH 3PbI 3 perovskite solar cells using TiO 2inverse opal electron-conducting scaffolds,” J. Mater. Chem. A 5(5), 1972–1977 (2017).
K. Chen and H. Tüysüz, “Morphology-Controlled Synthesis of Organometal Halide Perovskite Inverse Opals,” Angew. Chem., Int. Ed. 54(46), 13806–13810 (2015).
J. Dewalque, C. Henrist, and J. Loicq, “Light-harvesting capabilities of dielectric sphere multilayers,” Photonic and Phononic Properties of Engineered Nanostructures VIII, A. Adibi, S.-Y. Lin, and A. Scherer, eds. (SPIE, 2018), p. 72.
R. Schmager, I. Hossain, F. Schackmar, B. Richards, G. Gomard, and U. Paetzold, “Light coupling to quasi-guided modes in nanoimprinted perovskite solar cells,” Sol. Energy Mater. Sol. Cells 201, 110080 (2019).
R. Schmager, G. Gomard, B. S. Richards, and U. W. Paetzold, “Nanophotonic perovskite layers for enhanced current generation and mitigation of lead in perovskite solar cells,” Sol. Energy Mater. Sol. Cells 192, 65–71 (2019).
M. Saliba, J.-P. Correa-Baena, C. M. Wolff, M. Stolterfoht, N. Phung, S. Albrecht, D. Neher, and A. Abate, “How to Make over 20% Efficient Perovskite Solar Cells in Regular n-i-p and Inverted p-i-n Architectures,” Chem. Mater. 30(13), 4193–4201 (2018).
J. M. Ball, S. D. Stranks, M. T. Hörantner, S. Hüttner, W. Zhang, E. J. W. Crossland, I. Ramirez, M. Riede, M. B. Johnston, R. H. Friend, and H. J. Snaith, “Optical properties and limiting photocurrent of thin-film perovskite solar cells,” Energy Environ. Sci. 8(2), 602–609 (2015).
R. L. Olmon, B. Slovick, T. W. Johnson, D. Shelton, S. H. Oh, G. D. Boreman, and M. B. Raschke, “Optical dielectric function of gold,” Phys. Rev. B: Condens. Matter Mater. Phys. 86(23), 235147 (2012).
I. Hussain, H. P. Tran, J. Jaksik, J. Moore, N. Islam, and M. J. Uddin, “Functional materials, device architecture, and flexibility of perovskite solar cell,” Emergent Mater. 1(3-4), 133–154 (2018).
M. G. Moharam and T. K. Gaylord, “Rigorous coupled-wave analysis of planar-grating diffraction,” J. Opt. Soc. Am. 71(7), 811 (1981).
M. Lobet, M. Lard, M. Sarrazin, O. Deparis, and L. Henrard, “Plasmon hybridization in pyramidal metamaterials: a route towards ultra-broadband absorption,” Opt. Express 22(10), 12678 (2014).
We used here iQE with a lower case for our integrated quantum efficiency (photonic quantity) in order to avoid any confusion with IQE usually referred as internal quantum efficiency. The later includes the number of electron collected by a solar cell, is consequently an electric quantity and we do not aim to characterize the electric properties of the PSC in the present study.
A. Herman, C. Trompoukis, V. Depauw, O. E. Daif, and O. Deparis, “Influence of the pattern shape on the efficiency of front-side periodically patterned ultrathin crystalline silicon solar cells,” J. Appl. Phys. 112(11), 113107 (2012).
A. Lin and J. Phillips, “Optimization of random diffraction gratings in thin-film solar cells using genetic algorithms,” Sol. Energy Mater. Sol. Cells 92(12), 1689–1696 (2008).
K.-H. Brenner, “Aspects for calculating local absorption with the rigorous coupled-wave method,” Opt. Express 18(10), 10369 (2010).
S. Fan and J. Joannopoulos, “Analysis of guided resonances in photonic crystal slabs,” Phys. Rev. B 65(23), 235112 (2002).
S. Peng and G. M. Morris, “Experimental demonstration of resonant anomalies in diffraction from two-dimensional gratings,” Opt. Lett. 21(8), 549 (1996).
M. Lopez-Garcia, J. Galisteo-Lopez, C. Lopez, and A. Garcia-Martin, “Light confinement by two-dimensional arrays of dielectric spheres,” Phys. Rev. B: Condens. Matter Mater. Phys. 85(23), 235145 (2012).
S. Sandhu, Z. Yu, and S. Fan, “Detailed balance analysis of nanophotonic solar cells,” Opt. Express 21(1), 1209 (2013).
W. E. Sha, X. Ren, L. Chen, and W. C. Choy, “The efficiency limit of CH3NH3PbI3 perovskite solar cells,” Appl. Phys. Lett. 106(22), 221104 (2015).
M. Lobet, N. Reckinger, L. Henrard, and P. Lambin, “Robust electromagnetic absorption by graphene/polymer heterostructures,” Nanotechnology 26(28), 285702 (2015).