Optimization approach for optical absorption in three-dimensional structures including solar cells

被引:12
作者
Civiletti, Benjamin J. [1 ]
Anderson, Tom H. [1 ]
Ahmed, Faiz [2 ]
Monk, Peter B. [1 ]
Lakhtakia, Akhlesh [2 ]
机构
[1] Univ Delaware, Dept Math Sci, Newark, DE USA
[2] Penn State Univ, Dept Engn Sci & Mech, NanoMM Nanoengn Metamat Grp, University Pk, PA 16802 USA
基金
美国国家科学基金会;
关键词
amorphous silicon; differential evolution algorithm; figure of merit; optimization; rigorous coupled-wave approach; tandem solar cell; COUPLED-WAVE ANALYSIS; DIFFERENTIAL EVOLUTION; FORMULATION; GRATINGS;
D O I
10.1117/1.OE.57.5.057101
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The rigorous coupled-wave approach (RCWA) and the differential evolution algorithm (DEA) were coupled in a practicable approach to maximize absorption in optical structures with three-dimensional morphology. As a model problem, optimal values of four geometric parameters and the bandgaps of three i-layers were found for an amorphous-silicon, multiterminal, thin-film tandem solar cell comprising three p-i-n junctions with a metallic hexagonally corrugated backreflector. When the optical short-circuit current density was chosen as the figure of merit to be maximized, only the bandgap of the topmost i-layer was significant and the remaining six parameters played minor roles. While this configuration would absorb light very well, it would have poor electrical performance. This issue arises because the optimization problem allows for the thicknesses and bandgaps of the semiconductor layers to change. We therefore devised another figure of merit that takes into account bandgap changes by estimating the open-circuit voltage. The resulting configuration was found to be optimal with respect to all seven variable parameters. The RCWA + DEA optimization approach is applicable to other types of photovoltaic solar cells as well as optical absorbers, with the choice of the figure of merit being vital to a successful outcome. (C) 2018 Society of Photo-Optical Instrumentation Engineers (SPIE)
引用
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页数:9
相关论文
共 36 条
[1]   On optical-absorption peaks in a nonhomogeneous thin-film solar cell with a two-dimensional periodically corrugated metallic backreflector [J].
Ahmad, Faiz ;
Anderson, Tom H. ;
Civiletti, Benjamin J. ;
Monk, Peter B. ;
Lakhtakia, Akhlesh .
JOURNAL OF NANOPHOTONICS, 2018, 12 (01)
[2]  
ANDERSON LM, 1983, P SOC PHOTO-OPT INST, V408, P172, DOI 10.1117/12.935723
[3]   Combined optical-electrical finite-element simulations of thin-film solar cells with homogeneous and nonhomogeneous intrinsic layers [J].
Anderson, Tom H. ;
Faryad, Muhammad ;
Mackay, Tom G. ;
Lakhtakia, Akhlesh ;
Singh, Rajendra .
JOURNAL OF PHOTONICS FOR ENERGY, 2016, 6 (02)
[4]   Light trapping in thin-film solar cells: towards the Lambertian limit [J].
Andreani, Lucio Claudio ;
Bozzola, Angelo ;
Liscidini, Marco .
PHOTONICS FOR SOLAR ENERGY SYSTEMS IV, 2012, 8438
[5]  
[Anonymous], 1975, DIFFERENTIAL EQUATIO
[6]   Absorption and transmission of light in III-V nanowire arrays for tandem solar cell applications [J].
Anttu, Nicklas ;
Dagyte, Vilgaile ;
Zeng, Xulu ;
Otnes, Gaute ;
Borgstrom, Magnus .
NANOTECHNOLOGY, 2017, 28 (20)
[7]   Structurally tunable resonant absorption bands in ultrathin broadband plasmonic absorbers [J].
Butun, Serkan ;
Aydin, Koray .
OPTICS EXPRESS, 2014, 22 (16) :19457-19468
[8]   ALGORITHM FOR THE RIGOROUS COUPLED-WAVE ANALYSIS OF GRATING DIFFRACTION [J].
CHATEAU, N ;
HUGONIN, JP .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1994, 11 (04) :1321-1331
[9]  
Civiletti B. J., 2017, P SOC PHOTO-OPT INS, V10368
[10]  
Colinge CA Colinge J., 2002, PHYS SEMICONDUCTOR D