Influence of bending parameters on crystalline undulator radiation peak stability for 530 MeV positron channelling

Fuente: arXiv
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Main Authors: Dickers, Matthew D., Fantuzzi, Felipe, Mason, Nigel J., Korol, Andrei V., Solov'yov, Andrey V.
Format: Preprint
Published: 2026
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author Dickers, Matthew D.
Fantuzzi, Felipe
Mason, Nigel J.
Korol, Andrei V.
Solov'yov, Andrey V.
author_facet Dickers, Matthew D.
Fantuzzi, Felipe
Mason, Nigel J.
Korol, Andrei V.
Solov'yov, Andrey V.
contents We investigate the stability of crystalline undulator radiation (CUR) peaks emitted by 530 MeV positron channelling in periodically bent C(110) crystals with varying bending amplitudes and bending periods. Relativistic molecular dynamics simulations were performed to quantify how these parameters affect the intensity and position of the CUR peak. The continuous potential approximation was used to identify isolines of constant peak energy, providing a reference for regions of spectral stability. MD results show that increasing the bending amplitude shifts the CUR peak to lower photon energies, while decreasing the period shifts it to higher energies, with both trends accompanied by enhanced dechannelling. For crystal parameters similar to recent experiments conducted at the MAinz MIkrotron (MAMI), the simulated CUR peak appears near 0.515 MeV. These results demonstrate that the CUR peak remains stable across a broad range of bending amplitudes and periods, establishing estimates of manufacturing tolerances for the design of gamma-ray crystal-based light sources.
format Preprint
id arxiv_https___arxiv_org_abs_2601_06921
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Influence of bending parameters on crystalline undulator radiation peak stability for 530 MeV positron channelling
Dickers, Matthew D.
Fantuzzi, Felipe
Mason, Nigel J.
Korol, Andrei V.
Solov'yov, Andrey V.
Accelerator Physics
Applied Physics
Atomic Physics
We investigate the stability of crystalline undulator radiation (CUR) peaks emitted by 530 MeV positron channelling in periodically bent C(110) crystals with varying bending amplitudes and bending periods. Relativistic molecular dynamics simulations were performed to quantify how these parameters affect the intensity and position of the CUR peak. The continuous potential approximation was used to identify isolines of constant peak energy, providing a reference for regions of spectral stability. MD results show that increasing the bending amplitude shifts the CUR peak to lower photon energies, while decreasing the period shifts it to higher energies, with both trends accompanied by enhanced dechannelling. For crystal parameters similar to recent experiments conducted at the MAinz MIkrotron (MAMI), the simulated CUR peak appears near 0.515 MeV. These results demonstrate that the CUR peak remains stable across a broad range of bending amplitudes and periods, establishing estimates of manufacturing tolerances for the design of gamma-ray crystal-based light sources.
title Influence of bending parameters on crystalline undulator radiation peak stability for 530 MeV positron channelling
topic Accelerator Physics
Applied Physics
Atomic Physics
url https://arxiv.org/abs/2601.06921