In the context of the Antihydrogen Experiment: Gravity, Interferometry, Spectroscopy (AEgIS) located at CERN, positron-positronium converters with a high positron-positronium conversion efficiency have been designed in both reflection and transmission geometries. The converters utilize nanochanneled silicon target technology with positron conversion efficiencies up to around 50% and around 16%, at room temperature and in the absence of magnetic fields, for reflection and transmission respectively. The positron-positronium converters allow for the pulsed production of antihydrogen (H¯) within the AEgIS experiment. This paper discusses the use of a pulsed H¯ beam in a moiré deflectometer to perform a precise gravitational measurement on H¯ at AEgIS. This work describes the principles and technical details of the current design of a moiré deflectometer using the pulsed H¯ beam. The main goal of this work is to summarize the ongoing project of adding the described moiré deflectometer to the AEgIS experiment to further their efforts toward probing the material dependence of gravity and testing the weak equivalence principle (WEP).

Positron-Positronium Converters in Reflection and Transmission Geometry for Gravitational Experiments with Antihydrogen using Moiré Deflectometry

Zurlo N.
2025-01-01

Abstract

In the context of the Antihydrogen Experiment: Gravity, Interferometry, Spectroscopy (AEgIS) located at CERN, positron-positronium converters with a high positron-positronium conversion efficiency have been designed in both reflection and transmission geometries. The converters utilize nanochanneled silicon target technology with positron conversion efficiencies up to around 50% and around 16%, at room temperature and in the absence of magnetic fields, for reflection and transmission respectively. The positron-positronium converters allow for the pulsed production of antihydrogen (H¯) within the AEgIS experiment. This paper discusses the use of a pulsed H¯ beam in a moiré deflectometer to perform a precise gravitational measurement on H¯ at AEgIS. This work describes the principles and technical details of the current design of a moiré deflectometer using the pulsed H¯ beam. The main goal of this work is to summarize the ongoing project of adding the described moiré deflectometer to the AEgIS experiment to further their efforts toward probing the material dependence of gravity and testing the weak equivalence principle (WEP).
2025
Journal of Physics: Conference Series
Altre Istituz. pubb. estere
PE2_11 Lasers, ultra-short lasers, and laser physics
PE2_7 Atomic, molecular physics
Esperti anonimi
Inglese
13th International Workshop on Positron and Positronium Chemistry, PPC 2024
2024
Kanazawa Chamber of Commerce and Industry, jpn
3029
Institute of Physics
Altre Amm. Pubb. Italiane
Not applicable
none
Ferguson, R. C.; Alfaro Campos, S.; Auzins, M.; Berghold, M.; Bergmann, B.; Burian, P.; Brusa, R. S.; Camper, A.; Caravita, R.; Castelli, F.; Cerchiar...espandi
273
info:eu-repo/semantics/conferenceObject
65
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/634193
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