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Dear all, </div>
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Tomorrow, Sep 30th, at 1pm EDT, we will have a virtual seminar given by Michael Wagman from Fermilab on the Zoom for Government link: </div>
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<a href="https://jlab-org.zoomgov.com/j/1609048828?pwd=hwRyzb3PwNzfgmS3OSyrHf6zD3Gerr.1" id="OWA972fb66b-1839-e108-0418-f2bdad4e8b45" class="x_OWAAutoLink" data-linkindex="0" data-auth="NotApplicable" style="margin: 0px; text-align: left;">https://jlab-org.zoomgov.com/j/1609048828?pwd=hwRyzb3PwNzfgmS3OSyrHf6zD3Gerr.1</a></div>
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<span style="font-weight: 300;"><a href="https://jlab-org.zoomgov.com/j/1609048828?pwd=hwRyzb3PwNzfgmS3OSyrHf6zD3Gerr.1" target="_blank" id="LPUrlAnchor156880" style="margin: 0px;">Join our Cloud HD Video Meeting</a></span></div>
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Zoom is the leader in modern enterprise video communications, with an easy, reliable cloud platform for video and audio conferencing, chat, and webinars across mobile, desktop, and room systems. Zoom Rooms is the original software-based conference room solution
used around the world in board, conference, huddle, and training rooms, as well as executive offices and classrooms. Founded in 2011, Zoom helps businesses and organizations bring their teams together in a frictionless environment to get more done. Zoom is
a publicly traded company headquartered in San Jose, CA.</div>
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Please see below for the title and abstract. </div>
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<b><u>Theory Seminar</u></b>:<b> </b>September 30th, 1pm EDT (virtual) </div>
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<b><u>Speaker</u></b>: Michael Wagman (Fermilab) </div>
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<b><u>Title</u></b>:<b> </b>Solving the signal-to-noise problem with Lanczos </div>
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<b><u>Abstract</u></b>: Lattice quantum chromodynamics (QCD) can provide important theory inputs needed for new physics searches ranging from the muon g-2 to DUNE and other neutrino oscillation experiments. The energy spectrum of QCD, from which hadron masses
as well as hadronic scattering cross sections can be derived, is determined in lattice calculations through statistical analysis and fits of imaginary-time correlation functions. This analysis is made challenging by an exponentially severe signal-to-noise problem.
The problem worsens for more complex systems and prevents us from robustly predicting many properties of nucleons and nuclei directly from QCD. In this talk I will present a new method for obtaining energy spectra in lattice QCD based on applying the Lanczos
algorithm to the transfer matrix. This new Lanczos method does not suffer from exponential signal-to-noise problems and provides rigorous two-sided bounds on systematic uncertainties in its determinations of QCD energy levels. </div>
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See you on Monday. </div>
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Best regards, </div>
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Caroline, Joe, Zheng-Yang, and Gloria</div>
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