<?xml version="1.0" encoding="utf-8"?><rss version="2.0"><channel><title>RSS for Tungsten behaviour in radiatively cooled plasma discharges in ASDEX Upgrade</title><link>http://academic.research.microsoft.com/Rss.aspx?cata=9&amp;id=49090195</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>Wed, 19 Jun 2013 07:29:30 GMT</pubDate><lastBuildDate>Wed, 19 Jun 2013 07:29:30 GMT</lastBuildDate><category /><item><title>Tungsten behaviour in radiatively cooled plasma discharges in ASDEX Upgrade</title><link>http://academic.research.microsoft.com/Publication/49090195</link><pubDate>Wed, 19 Jun 2013 00:29:30 GMT</pubDate><guid isPermaLink="false">490901950</guid><description><![CDATA[<div><a href="http://academic.research.microsoft.com/Author/55531272">R. Neu</a>, <a href="http://academic.research.microsoft.com/Author/54575806">A. Kallenbach</a>, <a href="http://academic.research.microsoft.com/Author/52027608">M. Sertoli</a>, <a href="http://academic.research.microsoft.com/Author/21826103">R. Dux</a>, <a href="http://academic.research.microsoft.com/Author/312484">R. Fischer</a>, <a href="http://academic.research.microsoft.com/Author/11896566">J. C. Fuchs</a>, <a href="http://academic.research.microsoft.com/Author/21829294">A. Janzer</a>, <a href="http://academic.research.microsoft.com/Author/12478373">H. W. Müller</a>, <a href="http://academic.research.microsoft.com/Author/50140507">S. Potzel</a>, <a href="http://academic.research.microsoft.com/Author/13234738">T. Pütterich</a>, <a href="http://academic.research.microsoft.com/Author/10492523">G. van Rooij</a>:
            
            <span style="margin-left:20px" /><span style="margin-left:20px"><a href="http://www.sciencedirect.com/science/article/pii/S0022311510005465">view publication</a></span></div><div>In the all W ASDEX Upgrade impurities are injected routinely for radiative cooling. Amongst the different species used, <a href='http://academic.research.microsoft.com/Keyword/27825/nitrogen'>nitrogen</a>  has been shown to provide the best cooling effect, while maintaining or even improving the energy confinement. Depending on the divertor plasma parameters a reduction or increase of the W sputtering yield compared to the unseeded phases is observed. Although usually the energy confinement is improved during N2 seeding, no increased W concentrations are observed. Obviously the particle confinement is not improved and there are no signs of central density peaking. Moreover the sustained regular ELM activity prevents a strong inward transport of W across the pedestal region. In contrast, when using Ar as seeding impurity the ELM frequency is strongly reduced and also a change of central particle transport is observed provoking peaking of the W density profile.</div><div></div><div>Journal: <a href="http://academic.research.microsoft.com/Journal/5578">Journal of Nuclear Materials - J NUCL MATER</a>, vol. 415, no. 1, pp. S322-S326, 2011</div><div />]]></description></item></channel></rss>