<?xml version="1.0" encoding="utf-8"?><rss version="2.0"><channel><title>RSS for Mode Splitting for Efficient Plasmoinc Thin-film Solar Cell</title><link>http://academic.research.microsoft.com/Rss.aspx?cata=9&amp;id=27626950</link><description>Search RSS feed for Microsoft Academic Search</description><generator>MSRA Libra RSS Burner</generator><copyright>(c)2008 Microsoft Corpration, All right reserved.</copyright><pubDate>Mon, 20 May 2013 13:22:04 GMT</pubDate><lastBuildDate>Mon, 20 May 2013 13:22:04 GMT</lastBuildDate><category /><item><title>Mode Splitting for Efficient Plasmoinc Thin-film Solar Cell</title><link>http://academic.research.microsoft.com/Publication/27626950</link><pubDate>Mon, 20 May 2013 06:22:04 GMT</pubDate><guid isPermaLink="false">276269500</guid><description><![CDATA[<div><a href="http://academic.research.microsoft.com/Author/23354067">Tong Li</a>, <a href="http://academic.research.microsoft.com/Author/52579208">Lei Dai</a>, <a href="http://academic.research.microsoft.com/Author/1624538">Chun Jiang</a>:
            
            <span style="margin-left:20px" /><span style="margin-left:20px"><a href="http://arxiv.org/abs/1011.4361">view publication</a></span></div><div>We propose an efficient plasmonic structure consisting of metal strips and thin-film silicon for <a href='http://academic.research.microsoft.com/Keyword/38735/solar-energy'>solar energy</a>  absorption. We numerically demonstrate the absorption enhancement in symmetrical structure based on the mode coupling between the localized plasmonic mode in Ag strip pair and the excited waveguide mode in silicon slab. Then we explore the method of symmetry-breaking to excite the dark modes that can further enhance the absorption ability. We compare our structure with bare thin-film Si solar cell, and results show that the integrated <a href='http://academic.research.microsoft.com/Keyword/33786/quantum-efficiency'>quantum efficiency</a>  is improved by nearly 90% in such thin geometry. It is a promising way for the solar cell.</div><div></div><div></div><div>Published in 2010</div>]]></description></item></channel></rss>