High accuracy synchrotron radiation interferometry with relativistic electrons
Instrumentation and Detectors
2023-05-31 v1 Nuclear Experiment
Accelerator Physics
Abstract
A high-precision hypernuclear experiment has been performed at the Mainz Microtron (MAMI) to determine the hypertriton {\Lambda} binding energy via decay-pion spectroscopy. A key element of this measurement is an accurate calibration of the magnetic spectrometers with the MAMI beam. For such an absolute calibration with small statistical and systematic uncertainties the undulator light interference method will be applied. In this contribution the basic principle of this method is discussed and the analysis status of the measured synchrotron radiation spectra is presented
Cite
@article{arxiv.2212.11139,
title = {High accuracy synchrotron radiation interferometry with relativistic electrons},
author = {P. Klag and P. Achenbach and T. Akiyama and R. Böhm and M. O. Distler and L. Doria and P. Eckert and A. Esser and J. Geratz and T. Gogami and C. Helmel and P. Herrmann and M Hoek and M. Kaneta and Y. Konishi and R. Kino and W. Lauth and H. Merkel and M. Mizuno and U. Müller and S. Nagao and S. N. Nakamura and K. Okuyama and J. Pochodzalla and B. S. Schlimme and C. Sfienti and T. Shao and M. Steinen and S. Stengel and M. Thiel and Y. Toyama},
journal= {arXiv preprint arXiv:2212.11139},
year = {2023}
}
Comments
The 13th Biennial Conference on Classical and Quantum Relativistic Dynamics of Particles and Fields (IARD22)