157 citations · 330 across the 6 of their papers we have counts for
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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…
Real-time Signal Detection for Cyclotron Radiation Emission Spectroscopy Measurements using Antenna Arrays
A. Ashtari Esfahani, S. Böser, N. Buzinsky +48
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 Collaborat…
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…
Determining the neutrino mass with Cyclotron Radiation Emission Spectroscopy - Project 8
Ali Ashtari Esfahani, David M. Asner, Sebastian Böser +41
The most sensitive direct method to establish the absolute neutrino mass is observation of the endpoint of the tritium beta-decay spectrum. Cyclotron Radiation Emission Spectroscop…