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Link for Monday June 13: https://jlab-org.zoomgov.com/j/1618648632?pwd=dzFIWEQxcllrUzI2Sk9CbXF1UHY0dz09
Link for Tuesday June 14: https://jlab-org.zoomgov.com/j/1603604573?pwd=VEduZjZianIxSjdtWE91NkFQSVg0UT09
Link for Wednesday June 15: https://jlab-org.zoomgov.com/j/1617824455?pwd=dTFwNytQa0o3Uyt2QUxmQzF0OVRJdz09
Panelists: Alexander Austregesilo, Dien Nguyen, Joseph Newton, and Marie Boer
The mass of the W boson, a mediator of the weak force between elementary particles, is tightly constrained by the symmetries of the standard model of particle physics. The Higgs boson was the last missing component of the model. After observation of the Higgs boson, a measurement of the W boson mass provides a stringent test of the model. We measure the W boson mass, MW, using data corresponding to 8.8 inverse femtobarns of integrated luminosity collected in proton-antiproton collisions at a 1.96 TeV center-of-mass energy with the CDF II detector at the Fermilab Tevatron collider. A sample of approximately 4 million W boson candidates is used to obtain MW=80,433.5±6.4stat±6.9syst=80,433.5±9.4 MeV/c2, the precision of which exceeds that of all previous measurements combined. This measurement is in significant tension with the standard model expectation.
https://jlab-org.zoomgov.com/j/1606751014?pwd=cU55dmJpeDRVQmZHZHJwanNMdWNrUT09
Meeting ID: 160 675 1014
Passcode: 095110
https://jlab-org.zoomgov.com/j/1606751014?pwd=cU55dmJpeDRVQmZHZHJwanNMdWNrUT09
Meeting ID: 160 675 1014
Passcode: 095110