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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;VALUE=DATE:20240101
DTEND;VALUE=DATE:20250101
DTSTAMP:20240920T205609Z
CREATED:20240606T202451Z
LAST-MODIFIED:20240920T205609Z
UID:109097-1704067200-1735689599@www.a3veen.nl
SUMMARY:#CERN70
DESCRIPTION:2024 holds special significance for the European Organization for Nuclear Research (CERN) (/sɜːrn/; French pronunciation: [sɛʁn]; Conseil européen pour la Recherche nucléaire)\, as the Organization celebrates its 70th anniversary on 29 September 2024. \nCERN is an intergovernmental organization that operates the largest particle physics laboratory in the world. Established in 1954\, it is based in Meyrin\, western suburb of Geneva\, on the France–Switzerland border. It comprises 23 member states. Israel\, admitted in 2013\, is the only non-European full member. CERN is an official United Nations General Assembly observer. The acronym CERN is also used to refer to the laboratory; in 2019\, it had 2\,660 scientific\, technical\, and administrative staff members\, and hosted about 12\,400 users from institutions in more than 70 countries. CERN’s main function is to provide the particle accelerators and other infrastructure needed for high-energy physics research – consequently\, numerous experiments have been constructed at CERN through international collaborations. CERN is the site of the Large Hadron Collider (LHC)\, the world’s largest and highest-energy particle collider. The main site at Meyrin hosts a large computing facility\, which is primarily used to store and analyze data from experiments\, as well as simulate events. As researchers require remote access to these facilities\, the lab has historically been a major wide area network hub. CERN is also the birthplace of the World Wide Web. \nLinks:\nCERN70 \nSpecial anniversary edition of CERN Courier magazine \nExperimenteren met ongrijpbare antimateriedeeltjes – Op bezoek bij de antimateriefabriek van CERN
URL:https://www.a3veen.nl/event/cern70/
CATEGORIES:Fysica,kennis
END:VEVENT
BEGIN:VEVENT
DTSTART;VALUE=DATE:20241114
DTEND;VALUE=DATE:20241115
DTSTAMP:20241205T192657Z
CREATED:20241114T143627Z
LAST-MODIFIED:20241205T192657Z
UID:117358-1731542400-1731628799@www.a3veen.nl
SUMMARY:The shape of light: Scientists reveal image of an individual photon for 1st time ever / Exact Quantum Electrodynamics of Radiative Photonic Environments - publication
DESCRIPTION:Researchers in Birmingham have created the first image of a photon\, a lemon-shaped particle of light emitted from the surface of a nanoparticle. \nThe theory that made this image possible\, reported November 14\, 2024 in the journal Physical Review Letters\, enables scientists to calculate and understand various properties of these quantum particles — which could open up a range of new possibilities across fields such as quantum computing\, photovoltaic devices and artificial photosynthesis. Light’s quantum behavior is well established\, with over 100 years of experiments showing it can exist in both wave and particle form. But our fundamental understanding of this quantum nature is much further behind\, and we only have a limited grasp of how photons are created and emitted\, or of how they change through space and time. \nLinks:\nThe shape of light: Scientists reveal image of an individual photon for 1st time ever
URL:https://www.a3veen.nl/event/the-shape-of-light-scientists-reveal-image-of-an-individual-photon-for-1st-time-ever-exact-quantum-electrodynamics-of-radiative-photonic-environments-publication/
CATEGORIES:Fysica,kennis
END:VEVENT
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