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<div id="divRplyFwdMsg" dir="ltr"><font style="font-size:11pt" face="Calibri, sans-serif" color="#000000"><b>From:</b> Wilkinson, Ellie V <evwilk@wm.edu><br>
<b>Sent:</b> Monday, November 18, 2019 3:44 PM<br>
<b>To:</b> physics2017@physics.wm.edu <physics2017@physics.wm.edu><br>
<b>Cc:</b> undergrads2017@physics.wm.edu <undergrads2017@physics.wm.edu><br>
<b>Subject:</b> [EXTERNAL] Physics Colloquium Friday, November 22 " Exploring beyond the Standard Model with Lattice QCD" - Prof. Nicholson</font>
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<img style="width:2.2187in; height:2.2916in" data-loadstatus="pending" width="213" hspace="12" height="220" align="left" data-outlook-trace="F:1|T:1" src="cid:image003.jpg@01D59E26.FF590E70"><b><span style="font-size:14.0pt">Physics Colloquium</span></b><span style="font-size:14.0pt"></span></p>
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<span style="font-size:14.0pt">Friday, Nov 22, 2019</span></p>
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<span style="font-size:14.0pt">4:00 PM</span></p>
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<span style="font-size:14.0pt">Small Hall, Room 111 </span></p>
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<b><span style="font-size:14.0pt">Prof. Amy Nicholson </span></b><span style="font-size:14.0pt">[Host: C. Monahan]</span></p>
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Title of Talk: <b>“<i>Exploring beyond the Standard Model with Lattice QCD”</i></b><br>
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<b><span style="font-size:14.0pt">Abstract:</span></b><span style="font-size:14.0pt"> While the Standard Model (SM) of particle physics has been enormously successful in describing the world around us, there still remain many important and unanswered questions
requiring Beyond the SM (BSM) physics. One way to experimentally test the fundamental symmetries of the SM in searches for potential violations is to utilize properties of atomic nuclei which enhance these rare events. Connecting experimental signals from
nuclear environments to a particular BSM model requires the numerical solution of Quantum Chromodynamics (QCD), a cornerstone of the SM which governs nuclear interactions. In this talk I will discuss the use of Lattice QCD as a tool for numerically calculating
matrix elements relevant for experimental BSM searches. I will use neutrinoless double beta decay, which, if observed, could offer an explanation for the matter-antimatter asymmetry of the universe, as a key example.</span></p>
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<b><i><span style="background:yellow">Cookies & Coffee will be served in Small 122 at 3:30pm</span></i></b></p>
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<span style="color:#2F20A0">Cheers,</span></p>
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<span style="color:#2F20A0"> </span></p>
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<span style="color:#2F20A0">Ellie Wilkinson</span></p>
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<span style="color:#2F20A0">William & Mary Physics</span></p>
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<span style="color:#2F20A0">Administrative Coordinator</span></p>
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<span style="color:#2F20A0">Small Hall 123</span></p>
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<span style="color:#2F20A0">757-221-3503</span></p>
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