
XENONexperiment
@XENONexperiment
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Official twitter account of the XENON collaboration. XENONnT, currently one of the most sensitive detectors for WIMP Dark Matter.
Gran Sasso
Joined February 2017
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๐ป๐โจ Our Christmas present for you all this year is the new XENON website! https://t.co/9T3wlah3zl Check it out and let us know what you think. Merry Christmas! #Christmas2022
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The XENON community stands with @Elena_Aprile and her family in remembering Karl-Ludwig Giboni, technical manager of XENON10 and XENON100. His passing leaves a void in all who knew him. His ingenious contributions shaped the development of dual-phase xenon TPCs for dark matter๐ข
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XENONnT is the first experiment to measure nuclear recoils from solar neutrinos Today, July 10, at the #IDM2024 in LโAquila (IT), Fei Gao, from Tsingua Universitiy, reported this result: we can say that XENONnT enters into the so-called โneutrino fogโ.This is a great achievement!
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Marco Selvi, researcher at INFN Bologna, presented a talk at #IDM2024 in L'Aquila on "XENONnT Neutron Veto". The Gd-loaded water Cherenkov detector tags neutrons from materials and suppresses the most important backgrounds for WIMP search. Proud!๐ #XENONnT #DarkMatter #IDM2024
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Keixin Liu, PhD at Tsinghua University, presented a talk at #IDM2024 in L'Aquila on Accidental Coincidence Background in XENONnT: accidental coincidence events represent the largest background to nuclear recoil searches at low energies. Proud! ๐๐ #XENONnT #DarkMatter #IDM2024
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We are excited to announce that Henning Schulze Eiรing, @uni_muenster PhD, presented a talk at #IDM2024 in L'Aquila about the WIMP Dark Matter searches with XENONnT: competitive sensitivity to WIMP and other dark matter candidates. We are proud! ๐๐ #XENONnT #DarkMatter #IDM2024
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The XENONnT experiment with its reduced background levels, is paving the way for exploring rare physical processes beyond dark matter. Maxime's study focuses on the Xe-136 two-neutrino double beta decay spectral shape. This can provide valuable insights into new physics. Proud!
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We're excited to share that Maxime Pierre, a postdoc from the University of Amsterdam/@_nikhef , showcased his work during #Neutrino2024 in Milan on probing new physics with high-energy electronic recoil in the XENONnT detector. ๐ #XENONnT #DarkMatter #Physics #Neutrino2024
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@ApCimental7 The unprecedentedly low background levels of XENONnT enable a range of rare event searches beyond Dark Matter. Paloma's contribution showcases the analysis strategy and the challenges faced in detecting this rare second-order weak decay process. We are proud!
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We're excited to share that @ApCimental, a Ph.D. student from the @UZH_Science, showcased her work at #Neutrino2024 in Milan on the search for the two-neutrino electron capture with positron emission (2ฮฝECB+) in Xe-124 using the #XENONnT detector.๐ ๐ #DarkMatter #Physics
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XENONnT, although primarily designed to search for dark matter, leveraging coherent elastic neutrino-nucleus scattering (CEvNS) and its low background rate, can detect neutrinos from galactic and extragalactic supernovae. We are proud!
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We're thrilled by Ricardo Peres, Ph.D. student from @UZH_Science, who showcased his work at #Neutrino2024 in Milan on the real-time detection of supernova neutrinos using the XENONnT detector. ๐ #XENONnT #Neutrino2024 #SNEWS @snews
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In the XENONnT experiment, 214Pb constitutes a significant background. Cecilia's study reports measurements of 214Pb branching ratios, crucial for precision physics searches like solar-pp neutrino flux measurement. This work fills a vital gap in the literature. Proud of you!๐
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We're excited to announce that Cecilia Ferrari, a Ph.D. student from GSSI/LNGS, showcased her work during #Neutrino2024 in Milan on measuring the 214Pb branching ratios to ground state using the XENONnT detector. ๐ #XENONnT #DarkMatter #Physics #Neutrino2024
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His study, utilizing the XENONnT data, offers a novel method to measure the energy spectrum of 214-Bi beta decay. This research not only aids in the internal calibration of the detector but also allows comparison of the measured spectra with theoretical models. We are proud! ๐
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We're thrilled to share that Carlo Fuselli, a Ph.D. student from Nikhef and the University of Amsterdam, showcased his work at #Neutrino2024 in Milan on measuring the first-forbidden non-unique ฮฒ-decay energy spectrum of 214-Bi to 214-Po. ๐ #XENONnT #DarkMatter #Neutrino2024
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From probing new physics with high-energy electronic recoil to real-time detection of supernova neutrinos, our team is making significant strides in understanding the universe. Join us in celebrating these achievements and stay tuned for more updates and discoveries. ๐กโจ
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The XENONnT experiment also demonstrates a remarkable sensitivity to rare event searches other than WIMPs, including neutrino physics. At #Neutrino2024 in Milan our presentations highlight the incredible work being done by our young scientists. #XENONnT #DarkMatter #Neutrino2024
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