FASER (ForwArd Search ExpeRiment) at the Large Hadron Collider @CERN. Searching for long-lived weakly-interacting new particles and measuring neutrinos!
🚨 NEW RESULTS ALERT! 🚨
We were very pleased to have many new results shown at the Moriond EW and QCD conferences in the last two weeks!
Excitingly we now have a Physics Briefing webpage to accompany these new results: https://t.co/VNElx1HsJA
🧐 A New Way to See Electron Neutrinos at the LHC 🔍
Measurement of electron neutrinos using the calorimeter, a subdetector that captures a particle’s energy.
These exciting results demonstrate yet another way that we can measure high-energy neutrinos!
https://t.co/Mc29217oIr
⚡️More Muon Neutrinos with FASER’s Electronic Detector 🔌
An analysis of muon neutrino interactions using nearly 3 times more data than the previous analysis
These new measurements will inform and improve future theoretical modelling!
https://t.co/cXYvsScCEv
🚨 NEW RESULTS ALERT! 🚨
We were very pleased to have many new results shown at the Moriond EW and QCD conferences in the last two weeks!
Excitingly we now have a Physics Briefing webpage to accompany these new results: https://t.co/VNElx1HsJA
Photographing TeV Neutrinos with FASER 📸
Measuring neutrino interaction cross sections in a previously unexplored energy range using the FASERν emulsion detector.
Extends beyond current artificial neutrino sources and approaches energy scales of cosmic sources.
Einem Team mit Beteiligung der #unibern hat Neutrino-Wechselwirkungen bei Teilchenkollisionen im #LHC des @CERN bei bisher unerreichten Energien gemessen. Diese #Neutrinos könnten erste Spuren bisher ‘unentdeckter Physik’ sein: https://t.co/2xIOAc7RNg.
@FASERexperiment@BernLhep
A team involving #unibern has measured neutrino interactions in particle collisions in the #LHC of @CERN at unprecedented energies. The high-energy #neutrinos could be the first traces of previously 'undiscovered physics': https://t.co/cAn1m5kEMi.
@FASERexperiment@BernLhep
The strength of a neutrino 💪
Recently, the @FASERexperiment at CERN measured high-energy neutrino interaction strength.
At the annual @_Moriond_ conference, the FASER collaboration presented a measurement of the interaction strength of electron neutrinos (νe) and muon neutrinos (νμ).
The energies of the neutrinos were found to be in a range between 500 and 1700 GeV. The interaction strength of neutrinos had never previously been measured in this energy range.
Find out more: https://t.co/xof8Ycpyc2
#Moriond
🚨 NEW FASER RESULTS! 🚨
The latest results from FASER were shown at Moriond EW yesterday!
📏 First TeV neutrino cross section measurements
🧐 First axion-like particle search
🔗https://t.co/LOIjZPO5nW
🚨 More data incoming! 🚨
First stable beams collisions of the year!
Looking forward to what we can do with this new data in the coming months.
#BeamTime#LHCRun3
Today, the LHC receives the first stable beams of 2024 – a few short weeks after the first #BeamTime of the year and after several weeks of getting the #LHC ready for chapter three of #LHCRun3.
While we appreciate the excitement for the solar eclipse next Monday, CERN’s accelerator complex moves on a different schedule than the geometry of the Universe.😉
Find out more: https://t.co/eYp8kNDyNR
Today, the LHC receives the first stable beams of 2024 – a few short weeks after the first #BeamTime of the year and after several weeks of getting the #LHC ready for chapter three of #LHCRun3.
While we appreciate the excitement for the solar eclipse next Monday, CERN’s accelerator complex moves on a different schedule than the geometry of the Universe.����
Find out more: https://t.co/eYp8kNDyNR
@Samuel_Gregson@CERN Around 20 tau neutrino interactions are expectied during Run 3. Separation between tau neutrino and anti-neutrino can be possible if an outgoing muon charge can be reconstructed by FASER, but the number of such cases will likely be very low.
🚨 NEW FASER RESULTS! 🚨
The latest results from FASER were shown at Moriond EW yesterday!
📏 First TeV neutrino cross section measurements
🧐 First axion-like particle search
🔗https://t.co/LOIjZPO5nW
We also presented our first search for axion-like particles (ALPs)!
These could explain the strong CP problem.
Unfortunately we see no sign of these new particles, but can set exclusion limits in new regions of parameter space.
We make our first electron and muon neutrino cross section measurements using our emulsion detector.
These are also the first neutrino cross section measurements at TeV energy scales! 🥳
https://t.co/sRXteo9xrz