A Demonstration of Slowed Electron ${\bf E} \times {\bf B}$ Drift for PTOLEMY

Bibliographic Details
Title: A Demonstration of Slowed Electron ${\bf E} \times {\bf B}$ Drift for PTOLEMY
Authors: Farino, M., Tan, A., Apponi, A., Betti, M., Borghesi, M., Casale, A., Castellano, O., Cavoto, G., Cecchini, L., Celasco, E., Chung, W., Cocco, A. G., Colijn, A., Corcione, B., D'Ambrosio, N., de Groot, N., Morabit, S. el, Esposito, A., Faverzani, M., Ferella, A. D., Ferri, E., Ficcadenti, L., Gamba, S., Gariazzo, S., Garrone, H., Gatti, F., Giachero, A., Iwasaki, Y., Kievsky, A., Malnati, F., Mangano, G., Marcucci, L. E., Mariani, C., Mead, J., Menichetti, G., Messina, M., Monticone, E., Naafs, M., Nucciotti, A., Origo, L., Pandolfi, F., Paoloni, D., Pepe, C., Heros, C. Pérez de los, Pisanti, O., Pofi, F. M., Polosa, A. D., Rago, I., Rajteri, M., Rossi, N., Ruocco, A., Tayyab, S., Tozzini, V., Tully, C., van Rens, I., Virzi, F., Visser, G., Viviani, M., Zeitler, U., Zheliuk, O., Zimmer, F.
Publication Year: 2025
Collection: Physics (Other)
Subject Terms: Physics - Instrumentation and Detectors
More Details: The novel transverse electromagnetic filtering system proposed by the PTOLEMY collaboration necessitates the precise control of $\beta$-decay electron motion via ${\bf E} \times {\bf B}$ drift. In particular, drift speed must be slowed substantially to contain electrons within the radio-frequency antenna region and accurately tune voltage potentials within the filter. This paper presents the experimental design to vary ${\bf E} \times {\bf B}$ drift speed of carbon-14 $\beta$-decay electrons using a custom electrode field cage situated between the pole faces of an electromagnet. Matching our results with high-fidelity simulation, we deduce a capacity to increase particle time of flight by a factor of 5 in the field cage's slow drift region. Limited only by the dimensions of our system, we assert drift speed can be arbitrarily slowed to meet the needs of PTOLEMY's future detector.
Comment: 26 pages, 32 figures
Document Type: Working Paper
Access URL: http://arxiv.org/abs/2503.10025
Accession Number: edsarx.2503.10025
Database: arXiv
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