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The real-time data processing and acquisition system for Project 8 Phase II
A. Ashtari Esfahani, A. Banducci, S. Böser +36
In Phase II of the Project 8 neutrino mass experiment, electrons from the decays of tritium or Kr are detected via their 26 GHz cyclotron radiation whil…
Antenna Arrays for CRES-based Neutrino Mass Measurement
A. Ashtari Esfahani, S. Bhagvati, S. Böser +65
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 endpoi…
Project 8 Apparatus for Cyclotron Radiation Emission Spectroscopy with Kr and Tritium
A. Ashtari Esfahani, D. M. Asner, S. Böser +53
Cyclotron Radiation Emission Spectroscopy (CRES) is a novel technique for the precise measurement of relativistic electron energy. This technique is being employed by the Project~8…
Deep Learning Based Event Reconstruction for Cyclotron Radiation Emission Spectroscopy
A. Ashtari Esfahani, S. Böser, N. Buzinsky +48
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…
Electron Radiated Power in Cyclotron Radiation Emission Spectroscopy Experiments
A. Ashtari Esfahani, V. Bansal, S. Boser +38
The recently developed technique of Cyclotron Radiation Emission Spectroscopy (CRES) uses frequency information from the cyclotron motion of an electron in a magnetic bottle to inf…
Project 8 detector upgrades for a tritium beta decay spectrum using cyclotron radiation
A Ashtari Esfahani, S Böser, C Claessens +27
Following the successful observation of single conversion electrons from Kr using Cyclotron Radiation Emission Spectroscopy (CRES), Project 8 is now advancing its focus tow…