First Steps Toward the Development of a Straight-Line Reference Alignment System for Future Accelerators at CERN Using Pseudo-Nondiffracting Layer Beams

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Main Authors: Dušek, Martin, Figura, Sebastian, Polak, Jakub Michal, Kamugasa, Solomon William, Mergelkuhl, Dirk, Niewiem, Witold, Kunc, Štěpán, Gayde, Jean-Christophe, Šulc, Miroslav
Format: Preprint
Published: 2025
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author Dušek, Martin
Figura, Sebastian
Polak, Jakub Michal
Kamugasa, Solomon William
Mergelkuhl, Dirk
Niewiem, Witold
Kunc, Štěpán
Gayde, Jean-Christophe
Šulc, Miroslav
author_facet Dušek, Martin
Figura, Sebastian
Polak, Jakub Michal
Kamugasa, Solomon William
Mergelkuhl, Dirk
Niewiem, Witold
Kunc, Štěpán
Gayde, Jean-Christophe
Šulc, Miroslav
contents This paper presents experimental results that allow for the performance evaluation of a straight-line reference alignment system based on pseudo-nondiffracting Layer beams. Sensors, developed specifically for this system, feature four linear CMOS chips and a square aperture. This allows for simultaneous measurements along the beam path without disrupting the laser reference. Measurements, conducted over a distance of 2 m from the first to the last sensor, were compared with a laser tracker measurement to assess the sensor performance. The alignment reference generated by the Layer Beams exhibited a repeatability and reproducibility root-mean-square error (RMSE) of less than 30 $μ$m. The relative alignment precision for a known displacement was validated with a standard deviation of 4.3 $μ$m. The results highlight the underlying sources of noise, which are induced mainly by the cover glass, the protective film of the pixels, and the dark noise of the CMOS chips. Solutions to address these challenges are proposed. Additionally, a proof-of-concept for future development of a radiation-hard sensor utilizing optical fiber matrices is demonstrated. The RMSE of the reference position detection introduced by the fiber matrix remained below 1.3 $μ$m. This would allow the sensor to be used reliably in high-radiation environments typical for accelerator facilities. This study serves as a foundational step toward developing a robust straight-line reference alignment system based on pseudo-nondiffracting Layer beams intended for deployment in the accelerator facilities.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15234
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle First Steps Toward the Development of a Straight-Line Reference Alignment System for Future Accelerators at CERN Using Pseudo-Nondiffracting Layer Beams
Dušek, Martin
Figura, Sebastian
Polak, Jakub Michal
Kamugasa, Solomon William
Mergelkuhl, Dirk
Niewiem, Witold
Kunc, Štěpán
Gayde, Jean-Christophe
Šulc, Miroslav
Instrumentation and Detectors
Applied Physics
Optics
This paper presents experimental results that allow for the performance evaluation of a straight-line reference alignment system based on pseudo-nondiffracting Layer beams. Sensors, developed specifically for this system, feature four linear CMOS chips and a square aperture. This allows for simultaneous measurements along the beam path without disrupting the laser reference. Measurements, conducted over a distance of 2 m from the first to the last sensor, were compared with a laser tracker measurement to assess the sensor performance. The alignment reference generated by the Layer Beams exhibited a repeatability and reproducibility root-mean-square error (RMSE) of less than 30 $μ$m. The relative alignment precision for a known displacement was validated with a standard deviation of 4.3 $μ$m. The results highlight the underlying sources of noise, which are induced mainly by the cover glass, the protective film of the pixels, and the dark noise of the CMOS chips. Solutions to address these challenges are proposed. Additionally, a proof-of-concept for future development of a radiation-hard sensor utilizing optical fiber matrices is demonstrated. The RMSE of the reference position detection introduced by the fiber matrix remained below 1.3 $μ$m. This would allow the sensor to be used reliably in high-radiation environments typical for accelerator facilities. This study serves as a foundational step toward developing a robust straight-line reference alignment system based on pseudo-nondiffracting Layer beams intended for deployment in the accelerator facilities.
title First Steps Toward the Development of a Straight-Line Reference Alignment System for Future Accelerators at CERN Using Pseudo-Nondiffracting Layer Beams
topic Instrumentation and Detectors
Applied Physics
Optics
url https://arxiv.org/abs/2506.15234