R. Mueller
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View article: Antenna Arrays for CRES-based Neutrino Mass Measurement
Antenna Arrays for CRES-based Neutrino Mass Measurement Open
CRES is a technique for precision measurements of kinetic energies of charged particles, pioneered by the Project 8 experiment to measure the neutrino mass using the tritium endpoint method. It was recently employed for the first time to m…
View article: Deep learning based event reconstruction for cyclotron radiation emission spectroscopy
Deep learning based event reconstruction for cyclotron radiation emission spectroscopy Open
The objective of the cyclotron radiation emission spectroscopy (CRES) technology is to build precise particle energy spectra. This is achieved by identifying the start frequencies of charged particle trajectories which, when exposed to an …
View article: Real-time Signal Detection for Cyclotron Radiation Emission Spectroscopy Measurements using Antenna Arrays
Real-time Signal Detection for Cyclotron Radiation Emission Spectroscopy Measurements using Antenna Arrays Open
Cyclotron Radiation Emission Spectroscopy (CRES) is a technique for precision measurement of the energies of charged particles, which is being developed by the Project 8 Collaboration to measure the neutrino mass using tritium beta-decay s…
View article: SYNCA: A Synthetic Cyclotron Antenna for the Project 8 Collaboration
SYNCA: A Synthetic Cyclotron Antenna for the Project 8 Collaboration Open
Cyclotron Radiation Emission Spectroscopy (CRES) is a technique for measuring the kinetic energy of charged particles through a precision measurement of the frequency of the cyclotron radiation generated by the particle's motion in a magne…
View article: Distinguishing standard model extensions using monotop chirality at the LHC
Distinguishing standard model extensions using monotop chirality at the LHC Open
Here, we present two minimal extensions of the standard model, each giving rise to baryogenesis. They include heavy color-triplet scalars interacting with a light Majorana fermion that can be the dark matter (DM) candidate. The electroweak…