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<p class="MsoNormal"><span style="font-size:11.0pt;font-family:&quot;Calibri&quot;,sans-serif;color:#1F497D;mso-fareast-language:EN-US">FYI Colloquium at University of Glasgow next week.<o:p></o:p></span></p>
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<p class="MsoNormal"><b><span lang="EN-US" style="font-size:11.0pt;font-family:&quot;Calibri&quot;,sans-serif">From:</span></b><span lang="EN-US" style="font-size:11.0pt;font-family:&quot;Calibri&quot;,sans-serif"> Sonja Franke-Arnold [mailto:Sonja.Franke-Arnold@glasgow.ac.uk]
<br>
<b>Sent:</b> 27 November 2015 15:24<br>
<b>To:</b> phas-staff@glasgow.ac.uk; phas-hon-staff@glasgow.ac.uk; phas-pgall@glasgow.ac.uk<br>
<b>Cc:</b> Daniel Oi &lt;daniel.oi@strath.ac.uk&gt;<br>
<b>Subject:</b> colloquium 2nd December, 15:00, room 257, Mikhail Bashkanov<o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">Dear All,&nbsp;
<o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">Please note our colloquium next week!
<o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">speaker:
<b>Mikhail Bashkanov (University of Edinburgh)</b><o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">topic: &nbsp;<b>Dibaryonos: &nbsp;quarks in six-pack</b><o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">date:
<b>2nd December, 15:00-16:00</b><o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">room:
<b>Kelvin Building room 257</b><o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">Questions, doughnuts and time to meet afterwards in the common room (no six-packs provided.<o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black"><o:p>&nbsp;</o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">Best wishes,&nbsp;<o:p></o:p></span></p>
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<p class="MsoNormal"><span style="font-size:10.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">Sonja<o:p></o:p></span></p>
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<h1><span lang="EN-US" style="font-size:18.0pt;font-family:&quot;Tahoma&quot;,sans-serif;color:black">Dibaryons: quarks in six-pack</span><span style="font-family:&quot;Tahoma&quot;,sans-serif;color:black"><o:p></o:p></span></h1>
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<p class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:auto"><span lang="EN-US" style="color:black">&nbsp;</span><span style="color:black"><o:p></o:p></span></p>
<p class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:auto"><i><span lang="EN-US" style="font-family:&quot;Arial&quot;,sans-serif;color:black">Mikhail Bashkanov,
<span style="background:white">School of Physics and Astronomy,</span><a name="_GoBack"></a>
<span style="background:white">University of Edinburgh.</span></span></i><span style="color:black"><o:p></o:p></span></p>
<p class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:auto"><span lang="EN-US" style="color:black">&nbsp;</span><span style="color:black"><o:p></o:p></span></p>
<p class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;text-align:justify">
<span lang="EN-US" style="color:black;background:white">For a long time, physicists were only able to reliably verify two different classes of hadrons: volatile mesons comprising one quark and one antiquark and baryons consisting of three quarks.
</span><span lang="EN-US" style="color:black">However, the last decade became a tipping point in such a vision. Observation of meson-meson molecules, especially after the discovery of XYZ-states in the charm sector, of meson-baryon states, in particular dynamically
 generated resonances and charm pentaquarks, and finally the discovery of the existence of dibaryons demonstrate that the naïve quark picture is outdated and that nature is much richer and more complex. So searches for exotic phenomena in strong interaction
 scenarios has now become a world-wide trend.</span><span style="color:black"><o:p></o:p></span></p>
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<span lang="EN-US" style="color:black">The talk will be devoted to a recent discovery of the first non-trivial dibaryon resonance &#8211; &#8220;inevitable dibaryon&#8221;, d*(2380). Various aspects, including decay properties, internal structure and possible implication on
 the other fields will be discussed. Small mass (M_d*=2380MeV), narrow width (Gamma_d*=80MeV) and large &#8220;hidden color&#8221; component make&nbsp;</span><span style="color:black">d*(2380)&nbsp;to be a perfect tool to study the interplay between quark and molecular-type degrees
 of freedom in QCD.<o:p></o:p></span></p>
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<span lang="EN-US" style="color:black">Few other ongoing dibaryon programs will be outlined in the end.</span><span style="color:black"><o:p></o:p></span></p>
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