<?xml version="1.0" encoding="utf-8"?><rss version="2.0"><channel><title>RSS for Five-dimensional super Yang-Mills theory from ABJM theory</title><link>http://academic.research.microsoft.com/Rss.aspx?cata=9&amp;id=27599502</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 08:17:02 GMT</pubDate><lastBuildDate>Mon, 20 May 2013 08:17:02 GMT</lastBuildDate><category /><item><title>Five-dimensional super Yang-Mills theory from ABJM theory</title><link>http://academic.research.microsoft.com/Publication/27599502</link><pubDate>Mon, 20 May 2013 01:17:02 GMT</pubDate><guid isPermaLink="false">275995021</guid><description><![CDATA[<div><a href="http://academic.research.microsoft.com/Author/5833355">Andreas Gustavsson</a>:
            
            <span style="margin-left:20px">(Citations:1)</span><span style="margin-left:20px"><a href="http://www.springerlink.com/content/m2405xn3020h5093">view publication</a></span></div><div>We derive five-dimensional <a href='http://academic.research.microsoft.com/Keyword/40722/super-yang-mills-theory'>super Yang-Mills theory</a>  from mass-deformed ABJM theory by expanding about S 2 for large Chern-Simons level K. We obtain the Yang-Mills <a href='http://academic.research.microsoft.com/Keyword/8320/coupling-constant'>coupling constant</a>  . If we consider as a fiber bundle over S 2 then R/K is the circumference of the fiber. The value on the <a href='http://academic.research.microsoft.com/Keyword/8320/coupling-constant'>coupling constant</a>  agrees with what one gets by compactifying M five-brane on that fiber. For this computation we take R, K → ∞ while keeping R/K at a fixed finite value. We also study mass deformed star-three-product BLG theory at K = 1 and R → ∞. In that limit we obtain Lorentz covariant supersymmetry variations and gauge variations of a non-Abelian tensor multiplet.</div><div></div><div>Journal: <a href="http://academic.research.microsoft.com/Journal/8457">Journal of High Energy Physics - J HIGH ENERGY PHYS</a>, vol. 2011, no. 3, pp. 1-48, 2011</div><div />]]></description></item></channel></rss>