_version_ 1866916657024204800
author Esfahani, A. Ashtari
Böser, S.
Buzinsky, N.
Carmona-Benitez, M. C.
Claessens, C.
de Viveiros, L.
Fertl, M.
Formaggio, J. A.
Gladstone, L.
Grando, M.
Hartse, J.
Heeger, K. M.
Huyan, X.
Jones, A. M.
Kazkaz, K.
Li, M.
Lindman, A.
Matthé, C.
Mohiuddin, R.
Monreal, B.
Mueller, R.
Nikkel, J. A.
Novitski, E.
Oblath, N. S.
Peña, J. I.
Pettus, W.
Reimann, R.
Robertson, R. G. H.
Saldaña, L.
Slocum, P. L.
Stachurska, J.
Sun, Y. -H.
Surukuchi, P. T.
Telles, A. B.
Thomas, F.
Thomas, M.
Thorne, L. A.
Thümmler, T.
Tvrznikova, L.
Van De Pontseele, W.
VanDevender, B. A.
Weiss, T. E.
Wendler, T.
Zayas, E.
Ziegler, A.
author_facet Esfahani, A. Ashtari
Böser, S.
Buzinsky, N.
Carmona-Benitez, M. C.
Claessens, C.
de Viveiros, L.
Fertl, M.
Formaggio, J. A.
Gladstone, L.
Grando, M.
Hartse, J.
Heeger, K. M.
Huyan, X.
Jones, A. M.
Kazkaz, K.
Li, M.
Lindman, A.
Matthé, C.
Mohiuddin, R.
Monreal, B.
Mueller, R.
Nikkel, J. A.
Novitski, E.
Oblath, N. S.
Peña, J. I.
Pettus, W.
Reimann, R.
Robertson, R. G. H.
Saldaña, L.
Slocum, P. L.
Stachurska, J.
Sun, Y. -H.
Surukuchi, P. T.
Telles, A. B.
Thomas, F.
Thomas, M.
Thorne, L. A.
Thümmler, T.
Tvrznikova, L.
Van De Pontseele, W.
VanDevender, B. A.
Weiss, T. E.
Wendler, T.
Zayas, E.
Ziegler, A.
contents 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 magnetic field. The Project 8 collaboration is developing a next-generation neutrino mass measurement experiment based on CRES. One approach is to use a phased antenna array, which surrounds a volume of tritium gas, to detect and measure the cyclotron radiation of the resulting $β$-decay electrons. To validate the feasibility of this method, Project 8 has designed a test stand to benchmark the performance of an antenna array at reconstructing signals that mimic those of genuine CRES events. To generate synthetic CRES events, a novel probe antenna has been developed, which emits radiation with characteristics similar to the cyclotron radiation produced by charged particles in magnetic fields. This paper outlines the design, construction, and characterization of this Synthetic Cyclotron Antenna (SYNCA). Furthermore, we perform a series of measurements that use the SYNCA to test the position reconstruction capabilities of the digital beamforming reconstruction technique. We find that the SYNCA produces radiation with characteristics closely matching those expected for cyclotron radiation and reproduces experimentally the phenomenology of digital beamforming simulations of true CRES signals.
format Preprint
id arxiv_https___arxiv_org_abs_2212_08026
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle SYNCA: A Synthetic Cyclotron Antenna for the Project 8 Collaboration
Esfahani, A. Ashtari
Böser, S.
Buzinsky, N.
Carmona-Benitez, M. C.
Claessens, C.
de Viveiros, L.
Fertl, M.
Formaggio, J. A.
Gladstone, L.
Grando, M.
Hartse, J.
Heeger, K. M.
Huyan, X.
Jones, A. M.
Kazkaz, K.
Li, M.
Lindman, A.
Matthé, C.
Mohiuddin, R.
Monreal, B.
Mueller, R.
Nikkel, J. A.
Novitski, E.
Oblath, N. S.
Peña, J. I.
Pettus, W.
Reimann, R.
Robertson, R. G. H.
Saldaña, L.
Slocum, P. L.
Stachurska, J.
Sun, Y. -H.
Surukuchi, P. T.
Telles, A. B.
Thomas, F.
Thomas, M.
Thorne, L. A.
Thümmler, T.
Tvrznikova, L.
Van De Pontseele, W.
VanDevender, B. A.
Weiss, T. E.
Wendler, T.
Zayas, E.
Ziegler, A.
Instrumentation and Detectors
High Energy Physics - Experiment
Nuclear Experiment
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 magnetic field. The Project 8 collaboration is developing a next-generation neutrino mass measurement experiment based on CRES. One approach is to use a phased antenna array, which surrounds a volume of tritium gas, to detect and measure the cyclotron radiation of the resulting $β$-decay electrons. To validate the feasibility of this method, Project 8 has designed a test stand to benchmark the performance of an antenna array at reconstructing signals that mimic those of genuine CRES events. To generate synthetic CRES events, a novel probe antenna has been developed, which emits radiation with characteristics similar to the cyclotron radiation produced by charged particles in magnetic fields. This paper outlines the design, construction, and characterization of this Synthetic Cyclotron Antenna (SYNCA). Furthermore, we perform a series of measurements that use the SYNCA to test the position reconstruction capabilities of the digital beamforming reconstruction technique. We find that the SYNCA produces radiation with characteristics closely matching those expected for cyclotron radiation and reproduces experimentally the phenomenology of digital beamforming simulations of true CRES signals.
title SYNCA: A Synthetic Cyclotron Antenna for the Project 8 Collaboration
topic Instrumentation and Detectors
High Energy Physics - Experiment
Nuclear Experiment
url https://arxiv.org/abs/2212.08026