Title :
Plasmon enhanced optical absorption in silicon nanohole arrays for thin film solar cells applications
Author :
Pudasaini, Pushpa Raj ; Ayon, Arturo A.
Author_Institution :
Dept. of Phys. & Astron., Univ. of Texas at San Antonio, San Antonio, TX, USA
Abstract :
The surface plasmon effect of gold (Au) nanoparticles in combination with the silicon nanohole (SiNH) arrays texture surface is studied via simulation for light absorption enhancement for the thin film silicon solar cells application. It is found that the ultimate efficiency of an optimized silicon nanohole (SiNH) arrays texture surface in combination with the surface and bottom-of-a-trench Au nanoparticle arrays described herein, is 39.67%, which compares favorably with the ultimate efficiency of 31.11% for an optimized silicon nanohole arrays texture surface without Au nanoparticles. Detailed balanced analysis is carried out for the limiting values of short circuit current density (JSC), open circuit voltage (VOC), and the power conversion efficiency (PCE) of the proposed solar cells geometries.
Keywords :
absorption; elemental semiconductors; nanoparticles; semiconductor thin films; silicon; solar cell arrays; surface texture; Au; Si; balanced analysis; gold nanoparticles; light absorption enhancement; open circuit voltage; optimized silicon nanohole arrays texture surface; plasmon enhanced optical absorption; power conversion efficiency; short circuit current density; silicon nanohole arrays texture surface; solar cells geometries; surface plasmon effect; thin film solar cells applications; Absorption; Geometry; Gold; Nanoparticles; Photovoltaic cells; Silicon; Surface texture;
Conference_Titel :
Design, Test, Integration and Packaging of MEMS/MOEMS (DTIP), 2012 Symposium on
Conference_Location :
Cannes
Print_ISBN :
978-1-4673-0785-7