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Auteur principal: Varentsov, Victor
Format: Preprint
Publié: 2025
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Accès en ligne:https://arxiv.org/abs/2506.16599
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author Varentsov, Victor
author_facet Varentsov, Victor
contents In this article, we propose a new gas-dynamic ion beam cooler-buncher for the FAIR Laspec and MATS experiments. This very compact and having a simple design gas-dynamic cooler-buncher has a length of just 10.5 cm. It can convert continuous ion beams of various masses and with a transmission efficiency of around 100% into pulsed, high-quality ion beams. The special design of the supersonic nozzle and the RF-only funnel enables sufficient buffer gas (helium) thickness for effective ion beam cooling with an injection energy of up to several keV, without compromising the high vacuum in the other parts of the setup. The beams with a longitudinal emittance of down to 10 eV ns will be available. This emittance value is 20 times superior to the best current RFQ cooler-bunchers can deliver. We explored the operation of the proposed new gas-dynamic cooler-buncher by conducting detailed gas-dynamic and Monte Carlo ion-trajectory simulations. The results of these simulations are presented and discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2506_16599
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Towards a New and Compact Gas-Dynamic Cooler- Buncher for the FAIR Laspec and MATS Experiments
Varentsov, Victor
Accelerator Physics
In this article, we propose a new gas-dynamic ion beam cooler-buncher for the FAIR Laspec and MATS experiments. This very compact and having a simple design gas-dynamic cooler-buncher has a length of just 10.5 cm. It can convert continuous ion beams of various masses and with a transmission efficiency of around 100% into pulsed, high-quality ion beams. The special design of the supersonic nozzle and the RF-only funnel enables sufficient buffer gas (helium) thickness for effective ion beam cooling with an injection energy of up to several keV, without compromising the high vacuum in the other parts of the setup. The beams with a longitudinal emittance of down to 10 eV ns will be available. This emittance value is 20 times superior to the best current RFQ cooler-bunchers can deliver. We explored the operation of the proposed new gas-dynamic cooler-buncher by conducting detailed gas-dynamic and Monte Carlo ion-trajectory simulations. The results of these simulations are presented and discussed.
title Towards a New and Compact Gas-Dynamic Cooler- Buncher for the FAIR Laspec and MATS Experiments
topic Accelerator Physics
url https://arxiv.org/abs/2506.16599