Field Emission Analysis in SRF Cavities for PIP-II Using GEANT4

Fuente: arXiv
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Main Authors: Wijethunga, S. A. K., Sukhanov, A., Napoly, O., McGee, K.
Format: Preprint
Published: 2025
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author Wijethunga, S. A. K.
Sukhanov, A.
Napoly, O.
McGee, K.
author_facet Wijethunga, S. A. K.
Sukhanov, A.
Napoly, O.
McGee, K.
contents Field emission (FE) remains a significant hurdle for achieving optimal performance and reliability in super-conducting radiofrequency (SRF) cavities used in accelerator cryomodules. A thorough understanding of the generation and propagation of FE-induced radiation is therefore essential to mitigate this problem. The absence of standardized measurement protocols further complicates the comparison of radiation data across different testing phases and facilities. This highlights the need for a precise quantitative method to diagnose and analyze FE-induced radiation. Such efforts could prove beneficial for improving cavity preparation and cleanroom assembly techniques during the prototype and production stages of Fermilab's Proton Improvement Plan-II (PIP-II) project. This study presents the initial steps of detailed Geant4 simulations aimed at analyzing FE-induced radiation in the low-beta 650 MHz 5-cell elliptical (LB650) cavity. Our goal is to combine these results with radiation diagnostics to enhance diagnostic accuracy and optimize detector positioning. This integrated approach ultimately aims to improve the preparation, assembly, and testing procedures for PIP-II SRF cavities, ensuring the delivery of FE-free cryomodules.
format Preprint
id arxiv_https___arxiv_org_abs_2511_14987
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Field Emission Analysis in SRF Cavities for PIP-II Using GEANT4
Wijethunga, S. A. K.
Sukhanov, A.
Napoly, O.
McGee, K.
Accelerator Physics
Field emission (FE) remains a significant hurdle for achieving optimal performance and reliability in super-conducting radiofrequency (SRF) cavities used in accelerator cryomodules. A thorough understanding of the generation and propagation of FE-induced radiation is therefore essential to mitigate this problem. The absence of standardized measurement protocols further complicates the comparison of radiation data across different testing phases and facilities. This highlights the need for a precise quantitative method to diagnose and analyze FE-induced radiation. Such efforts could prove beneficial for improving cavity preparation and cleanroom assembly techniques during the prototype and production stages of Fermilab's Proton Improvement Plan-II (PIP-II) project. This study presents the initial steps of detailed Geant4 simulations aimed at analyzing FE-induced radiation in the low-beta 650 MHz 5-cell elliptical (LB650) cavity. Our goal is to combine these results with radiation diagnostics to enhance diagnostic accuracy and optimize detector positioning. This integrated approach ultimately aims to improve the preparation, assembly, and testing procedures for PIP-II SRF cavities, ensuring the delivery of FE-free cryomodules.
title Field Emission Analysis in SRF Cavities for PIP-II Using GEANT4
topic Accelerator Physics
url https://arxiv.org/abs/2511.14987