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BEGIN:VEVENT
DTSTART;VALUE=DATE:20101218
DTEND;VALUE=DATE:20301219
DTSTAMP:20241211T215001Z
CREATED:20230721T092751Z
LAST-MODIFIED:20241211T215001Z
UID:92363-1292630400-1923868799@www.a3veen.nl
SUMMARY:IceCube Neutrino Observatory
DESCRIPTION:The IceCube Neutrino Observatory (or simply IceCube) is a neutrino observatory constructed at the Amundsen–Scott South Pole Station in Antarctica\, the project is a recognized CERN experiment (RE10). \nIts thousands of sensors are located under the Antarctic ice\, distributed over a cubic kilometre. Similar to its predecessor\, the Antarctic Muon And Neutrino Detector Array (AMANDA)\, IceCube consists of spherical optical sensors called Digital Optical Modules (DOMs)\, each with a photomultiplier tube (PMT) and a single-board data acquisition computer which sends digital data to the counting house on the surface above the array. IceCube was completed on 18 December 2010. DOMs are deployed on strings of 60 modules each at depths between 1\,450 and 2\,450 meters into holes melted in the ice using a hot water drill. IceCube is designed to look for point sources of neutrinos in the teraelectronvolt (TeV) range to explore the highest-energy astrophysical processes. In November 2013 it was announced that IceCube had detected 28 neutrinos that likely originated outside the Solar System. \nLinks:\nIceCube Neutrino Observatory \nIceCube: the coolest way to detect neutrinos (TV The Royal Institution) \nIceCube: the coolest way to detect neutrinos \nANITA experiment \nOur galaxy seen through a new lens: neutrinos detected by IceCube \n[LIVE] Observation of high-energy neutrinos from the Galactic plane
URL:https://www.a3veen.nl/event/icecube-neutrino-observatory/
CATEGORIES:Fysica,kennis
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Amsterdam:20230810T160000
DTEND;TZID=Europe/Amsterdam:20230810T170000
DTSTAMP:20230810T164421Z
CREATED:20230810T163609Z
LAST-MODIFIED:20230810T164421Z
UID:93199-1691683200-1691686800@www.a3veen.nl
SUMMARY:#gminus2 New results from the Muon g-2 experiment at Fermilab - Publication / Scientific Seminar
DESCRIPTION:Muon g-2 doubles down with latest measurement\, explores uncharted territory in search of new physics. \nPhysicists now have a brand-new measurement of a property of the muon called the anomalous magnetic moment that improves the precision of their previous result by a factor of 2. An international collaboration of scientists working on the Muon g-2 experiment at the U.S. Department of Energy’s Fermi National Accelerator Laboratory announced the much-anticipated updated measurement on Aug. 10. This new value bolsters the first result they announced in April 2021 and sets up a showdown between theory and experiment over 20 years in the making. “We’re really probing new territory. We’re determining the muon magnetic moment at a better precision than it has ever been seen before\,” said Brendan Casey\, a senior scientist at Fermilab who has worked on the Muon g-2 experiment since 2008. \nPhysicists describe how the universe works at its most fundamental level with a theory known as the Standard Model. By making predictions based on the Standard Model and comparing them to experimental results\, physicists can discern whether the theory is complete — or if there is physics beyond the Standard Model. Muons are fundamental particles that are similar to electrons but about 200 times as massive. Like electrons\, muons have a tiny internal magnet that\, in the presence of a magnetic field\, precesses or wobbles like the axis of a spinning top. The precession speed in a given magnetic field depends on the muon magnetic moment\, typically represented by the letter g; at the simplest level\, theory predicts that g should equal 2.  \nThe difference of g from 2 — or g minus 2 — can be attributed to the muon’s interactions with particles in a quantum foam that surrounds it. These particles blink in and out of existence and\, like subatomic “dance partners\,” grab the muon’s “hand” and change the way the muon interacts with the magnetic field. The Standard Model incorporates all known “dance partner” particles and predicts how the quantum foam changes g. But there might be more. Physicists are excited about the possible existence of as-yet-undiscovered particles that contribute to the value of g-2 — and would open the window to exploring new physics. \nThe new experimental result\, based on the first three years of data\, announced by the Muon g-2 collaboration is:\ng-2 = 0.00233184110 +/- 0.00000000043 (stat.) +/- 0.00000000019 (syst.) \nThe measurement of g-2 corresponds to a precision of 0.20 parts per million. The Muon g-2 collaboration describes the result in a paper that they submitted today to Physical Review Letters. With this measurement\, the collaboration has already reached their goal of decreasing one particular type of uncertainty: uncertainty caused by experimental imperfections\, known as systematic uncertainties.  \nLinks:\n#gminus2 Press Conference: First results from the Muon g-2 experiment at Fermilab
URL:https://www.a3veen.nl/event/gminus2-new-results-from-the-muon-g-2-experiment-at-fermilab/
LOCATION:Fermilab\, Wilson Street and Kirk Road\, Batavia\, illinois\, Verenigde Staten
CATEGORIES:Fysica,kennis
END:VEVENT
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