<?xml version='1.0' encoding='UTF-8'?><rss xmlns:atom="http://www.w3.org/2005/Atom" xmlns:openSearch="http://a9.com/-/spec/opensearchrss/1.0/" xmlns:blogger="http://schemas.google.com/blogger/2008" xmlns:georss="http://www.georss.org/georss" xmlns:gd="http://schemas.google.com/g/2005" xmlns:thr="http://purl.org/syndication/thread/1.0" version="2.0"><channel><atom:id>tag:blogger.com,1999:blog-3665774670778660278</atom:id><lastBuildDate>Fri, 08 Nov 2024 15:11:57 +0000</lastBuildDate><category>video lecture</category><category>Nanoscale</category><category>magnetism</category><category>spintronics</category><category>Synchrotron</category><category>magetic material</category><category>nanotechnology</category><category>neutron reflectometry</category><category>Spin manipulation</category><category>ebook</category><category>magnetic recording</category><category>neutronscattering</category><category>Video</category><category>coherent scattering</category><category>Magnetic race-track</category><category>Quantum Computation</category><category>data analysis</category><category>ferromagnetic semiconductor</category><category>music</category><category>neutron school</category><category>quantum mechanics</category><category>quantum physics</category><category>speckle</category><category>spin torque</category><category>x-ray</category><category>2D analysis</category><category>AFM</category><category>Barkhausen Effect</category><category>Electricity</category><category>Happy New Year</category><category>Image processing</category><category>ImageJ</category><category>MFM</category><category>Magnetic Domain</category><category>Matlab</category><category>Max IV</category><category>NSLS-II</category><category>Neutron source</category><category>Nobel lecture</category><category>Physics</category><category>Quantum Processing</category><category>Rainbow</category><category>SPM company</category><category>STM</category><category>Superconductivity</category><category>X-ray Free Electron Laser</category><category>animated GIF</category><category>avi</category><category>bollywood</category><category>conference</category><category>djvu</category><category>ferrite</category><category>googlereader</category><category>hindi movie</category><category>imaging</category><category>lecture</category><category>magnetic imaging</category><category>magnetic memory</category><category>magnetic microscopy</category><category>magnetic monopole</category><category>magnetic resonance</category><category>magnetoelectronics</category><category>multiferroics</category><category>neutron</category><category>origin plot</category><category>particle analysis</category><category>phase transition</category><category>plugins</category><category>polarized neutron imaging</category><category>radio</category><category>rss feed</category><category>scanning probe microscopy</category><category>software</category><category>spallation</category><category>streamripper</category><category>subscribe</category><category>video download</category><title>Nanomagnetism: From Basics to Application</title><description>Thin film magnetism using synchrotron radiation and neutron scattering: &#xa;Ultrafast motion of ultra small object</description><link>http://nano-magnetism.blogspot.com/</link><managingEditor>noreply@blogger.com (Jyoti Mohanty)</managingEditor><generator>Blogger</generator><openSearch:totalResults>72</openSearch:totalResults><openSearch:startIndex>1</openSearch:startIndex><openSearch:itemsPerPage>25</openSearch:itemsPerPage><item><guid isPermaLink="false">tag:blogger.com,1999:blog-3665774670778660278.post-7104810804958477156</guid><pubDate>Fri, 07 May 2010 08:56:00 +0000</pubDate><atom:updated>2010-05-07T01:56:57.808-07:00</atom:updated><category domain="http://www.blogger.com/atom/ns#">magnetic imaging</category><category domain="http://www.blogger.com/atom/ns#">Nanoscale</category><category domain="http://www.blogger.com/atom/ns#">video lecture</category><title>Nanomagnetic Imaging</title><description>&lt;embed type=&quot;application/x-mplayer2&quot; 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value=&quot;true&quot;&gt;&lt;/param&gt;&lt;param name=&quot;allowscriptaccess&quot; value=&quot;always&quot;&gt;&lt;/param&gt;&lt;embed src=&quot;http://www.youtube.com/v/q5jRHZWQ0sc&amp;hl=en_GB&amp;fs=1&amp;&quot; type=&quot;application/x-shockwave-flash&quot; allowscriptaccess=&quot;always&quot; allowfullscreen=&quot;true&quot; width=&quot;460&quot; height=&quot;385&quot;&gt;&lt;/embed&gt;&lt;/object&gt;</description><link>http://nano-magnetism.blogspot.com/2010/03/racetrack-memory-with-stuart-parkin.html</link><author>noreply@blogger.com (Jyoti Mohanty)</author><thr:total>0</thr:total></item><item><guid isPermaLink="false">tag:blogger.com,1999:blog-3665774670778660278.post-3854051396011360957</guid><pubDate>Sun, 18 Oct 2009 05:02:00 +0000</pubDate><atom:updated>2009-10-17T23:03:23.330-07:00</atom:updated><title>Happy Deepawali (Festival of light)</title><description>&lt;a onblur=&quot;try {parent.deselectBloggerImageGracefully();} catch(e) {}&quot; href=&quot;https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhbE3SMXUfhciUI_qE1NwqEHmz7rux2F9WIH3d9G41i-iYBbjVvfKZXvuPIyAxo3o35aocxiv307_mg1NBm8gyPFBtPdno1keTeSIydEvKOx23auivlOdpbkWiYidpx2H_VbVN5N5s9V70/s1600-h/101_4664.JPG&quot;&gt;&lt;img style=&quot;cursor:pointer; cursor:hand;width: 300px; height: 250px;&quot; src=&quot;https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhbE3SMXUfhciUI_qE1NwqEHmz7rux2F9WIH3d9G41i-iYBbjVvfKZXvuPIyAxo3o35aocxiv307_mg1NBm8gyPFBtPdno1keTeSIydEvKOx23auivlOdpbkWiYidpx2H_VbVN5N5s9V70/s200/101_4664.JPG&quot; border=&quot;0&quot; alt=&quot;&quot;id=&quot;BLOGGER_PHOTO_ID_5393801572273743858&quot; /&gt;&lt;/a&gt;</description><link>http://nano-magnetism.blogspot.com/2009/10/happy-deepawali-festival-of-light.html</link><author>noreply@blogger.com (Jyoti Mohanty)</author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhbE3SMXUfhciUI_qE1NwqEHmz7rux2F9WIH3d9G41i-iYBbjVvfKZXvuPIyAxo3o35aocxiv307_mg1NBm8gyPFBtPdno1keTeSIydEvKOx23auivlOdpbkWiYidpx2H_VbVN5N5s9V70/s72-c/101_4664.JPG" height="72" width="72"/><thr:total>0</thr:total></item><item><guid isPermaLink="false">tag:blogger.com,1999:blog-3665774670778660278.post-650800496046374470</guid><pubDate>Wed, 14 Oct 2009 22:42:00 +0000</pubDate><atom:updated>2009-10-15T17:26:41.095-07:00</atom:updated><category domain="http://www.blogger.com/atom/ns#">magnetic monopole</category><title>&#39;Magnetic electricity&#39; discovered</title><description>&lt;a onblur=&quot;try {parent.deselectBloggerImageGracefully();} catch(e) {}&quot; href=&quot;http://www.nature.com/nature/journal/v461/n7266/images/nature08500-f1.2.jpg&quot;&gt;&lt;img style=&quot;cursor:pointer; cursor:hand;width: 300px; height: 300px;&quot; src=&quot;http://www.nature.com/nature/journal/v461/n7266/images/nature08500-f1.2.jpg&quot; border=&quot;0&quot; alt=&quot;&quot; /&gt;&lt;/a&gt;&lt;span style=&quot;font-weight:bold;&quot;&gt;a&lt;/span&gt;, In zero field, magnetic charges occur as bound pairs, but some dissociate to give a fluctuating magnetic moment (green arrow). &lt;span style=&quot;font-weight:bold;&quot;&gt;b&lt;/span&gt;, The field energy -QBrz competes with the Coulomb potential -mu_0Q^2/4pi.r to lower the activation barrier to dissociation.&lt;span style=&quot;font-weight:bold;&quot;&gt; c&lt;/span&gt;, The application of a transverse field causes dissociation as charges are accelerated by the field. &lt;span style=&quot;font-weight:bold;&quot;&gt;d&lt;/span&gt;, In the applied field, these charges remain dissociated while more bound pairs form to restore equilibrium. Magnetic moment fluctuations due to free charges produce local fields that are detected by implanted muons (mu^+).&lt;br /&gt;For details click &lt;a href=&quot;http://www.nature.com/nature/journal/v461/n7266/abs/nature08500.html&quot;&gt;here&lt;/a&gt;. More news &lt;a href=&quot;http://www.nature.com/news/2009/090903/full/news.2009.881.html&quot;&gt;Nature&lt;/a&gt; &lt;a href=&quot;http://en.wikipedia.org/wiki/Magnetic_monopole&quot;&gt;Wikipedia link&lt;/a&gt; &lt;a href=&quot;http://www.physorg.com/news171209923.html&quot;&gt;PhysicsOrg&lt;/a&gt; &lt;a href=&quot;http://sciencenow.sciencemag.org/cgi/content/full/2009/904/1&quot;&gt;Sciencenow&lt;/a&gt; &lt;a href=&quot;http://www.scientificamerican.com/article.cfm?id=magnetic-monopole-spin-ice&quot;&gt;Scientificamerican&lt;/a&gt;&lt;br /&gt;&lt;br /&gt;Researchers have discovered a magnetic equivalent to electricity: single magnetic charges that can behave and interact like electrical ones.&lt;br /&gt;The work is the first to make use of the magnetic monopoles that exist in special crystals known as spin ice. 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