Performance of short and long bent crystals for the TWOCRYST experiment at the Large Hadron Collider

Fuente: arXiv
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Main Authors: Bandiera, L., Cai, R., Carsi, S., Cesare, S., Dewhurst, K. A., D'Andrea, M., De Salvador, D., Gandini, P., Guidi, V., Hermes, P., Lezzani, G., Malagutti, L., Marangotto, D., Maccani, C., Mazzolari, A., Merli, A., Mirarchi, D., Monti-Guarnieri, P., Montanari, C. E., Negrello, R., Neri, N., Prest, M., Redaelli, S., Romagnoni, M., Selmi, A., Tonani, G., Vallazza, E., Veres, D., Zangari, F., Zielinska, M.
Format: Preprint
Published: 2025
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author Bandiera, L.
Cai, R.
Carsi, S.
Cesare, S.
Dewhurst, K. A.
D'Andrea, M.
De Salvador, D.
Gandini, P.
Guidi, V.
Hermes, P.
Lezzani, G.
Malagutti, L.
Marangotto, D.
Maccani, C.
Mazzolari, A.
Merli, A.
Mirarchi, D.
Monti-Guarnieri, P.
Montanari, C. E.
Negrello, R.
Neri, N.
Prest, M.
Redaelli, S.
Romagnoni, M.
Selmi, A.
Tonani, G.
Vallazza, E.
Veres, D.
Zangari, F.
Zielinska, M.
author_facet Bandiera, L.
Cai, R.
Carsi, S.
Cesare, S.
Dewhurst, K. A.
D'Andrea, M.
De Salvador, D.
Gandini, P.
Guidi, V.
Hermes, P.
Lezzani, G.
Malagutti, L.
Marangotto, D.
Maccani, C.
Mazzolari, A.
Merli, A.
Mirarchi, D.
Monti-Guarnieri, P.
Montanari, C. E.
Negrello, R.
Neri, N.
Prest, M.
Redaelli, S.
Romagnoni, M.
Selmi, A.
Tonani, G.
Vallazza, E.
Veres, D.
Zangari, F.
Zielinska, M.
contents This study investigates the performance of bent silicon crystals intended to channel hadrons in a fixed-target experiment at the Large Hadron Collider (LHC). The phenomenon of planar channelling in bent crystals enables extremely high effective bending fields for positively charged hadrons within compact volumes. Particles trapped in the potential well of high-purity, ordered atomic lattices follow the mechanical curvature of the crystal, resulting in macroscopic deflections. Although the bend angle remains constant across different momenta (i.e., the phenomenon is non-dispersive), the channelling acceptance and efficiency still depend on the particle momentum. Crystals with lengths from 5 cm to 10 cm, bent to angles between 5 mrad and 15 mrad, are under consideration for measurements of the electric and magnetic dipole moments of short-lived charmed baryons, such as the Lambda_c^+. Such large deflection angles over short distances cannot be achieved using conventional magnets. The principle of inducing spin precession through bent crystals for magnetic dipole moment measurements was first demonstrated in the 1990s. Building on this concept, experimental layouts are now being explored at the LHC. The feasibility of such measurements depends, among other factors, on the availability of crystals with the mechanical properties required to achieve the necessary channelling performance. To address this, a dedicated machine experiment, TWOCRYST, has been installed in the LHC to carry out beam tests in the TeV energy range. The bent crystals for TWOCRYST were fabricated and tested using X-ray diffraction and high-momentum hadron beams at 180 GeV/c at the CERN SPS. This paper presents an analysis of the performance of these newly developed crystals, as characterised by these measurements.
format Preprint
id arxiv_https___arxiv_org_abs_2505_14365
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Performance of short and long bent crystals for the TWOCRYST experiment at the Large Hadron Collider
Bandiera, L.
Cai, R.
Carsi, S.
Cesare, S.
Dewhurst, K. A.
D'Andrea, M.
De Salvador, D.
Gandini, P.
Guidi, V.
Hermes, P.
Lezzani, G.
Malagutti, L.
Marangotto, D.
Maccani, C.
Mazzolari, A.
Merli, A.
Mirarchi, D.
Monti-Guarnieri, P.
Montanari, C. E.
Negrello, R.
Neri, N.
Prest, M.
Redaelli, S.
Romagnoni, M.
Selmi, A.
Tonani, G.
Vallazza, E.
Veres, D.
Zangari, F.
Zielinska, M.
High Energy Physics - Experiment
Instrumentation and Detectors
This study investigates the performance of bent silicon crystals intended to channel hadrons in a fixed-target experiment at the Large Hadron Collider (LHC). The phenomenon of planar channelling in bent crystals enables extremely high effective bending fields for positively charged hadrons within compact volumes. Particles trapped in the potential well of high-purity, ordered atomic lattices follow the mechanical curvature of the crystal, resulting in macroscopic deflections. Although the bend angle remains constant across different momenta (i.e., the phenomenon is non-dispersive), the channelling acceptance and efficiency still depend on the particle momentum. Crystals with lengths from 5 cm to 10 cm, bent to angles between 5 mrad and 15 mrad, are under consideration for measurements of the electric and magnetic dipole moments of short-lived charmed baryons, such as the Lambda_c^+. Such large deflection angles over short distances cannot be achieved using conventional magnets. The principle of inducing spin precession through bent crystals for magnetic dipole moment measurements was first demonstrated in the 1990s. Building on this concept, experimental layouts are now being explored at the LHC. The feasibility of such measurements depends, among other factors, on the availability of crystals with the mechanical properties required to achieve the necessary channelling performance. To address this, a dedicated machine experiment, TWOCRYST, has been installed in the LHC to carry out beam tests in the TeV energy range. The bent crystals for TWOCRYST were fabricated and tested using X-ray diffraction and high-momentum hadron beams at 180 GeV/c at the CERN SPS. This paper presents an analysis of the performance of these newly developed crystals, as characterised by these measurements.
title Performance of short and long bent crystals for the TWOCRYST experiment at the Large Hadron Collider
topic High Energy Physics - Experiment
Instrumentation and Detectors
url https://arxiv.org/abs/2505.14365