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January 16, 2026Nuclear Science and Techniques2 citationsOpen Access

KONUS dynamics for a 750 MHz IH-based injector

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JNJ. Giner NavarroCOC. OliverDGD. Gavela

Key Points

  • The aim is to enhance the performance of accelerators for carbon ion therapy for tumor treatment.
  • Developed a particle-tracking routine using the TRAVEL code.
  • Designed a 750 MHz IH-DTL for accelerating carbon ions.
  • Compared three design alternatives for integration with existing systems.
  • Evaluated beam dynamics using a KONUS-type configuration.
  • Proposed designs increased efficiency for accelerating carbon ions in the 5-10 MeV per nucleon range.
  • Identified optimal magnetic system configurations for beam focusing.
  • Assessed compatibility with existing carbon ion bent-linac systems.

Abstract

Abstract In response to the increasing demand for hadron therapy facilities, significant efforts have been directed toward enhancing the performance of high-gradient and high-transmission injectors for light ion beams. For carbon ion irradiations, which offer greater radiobiological efficiency in tumor treatment, recent research has focused on developing high-production sources of fully stripped C ^6+ 6 + ions and highly compact, high-frequency RFQ cavities. This study explores the design possibilities of a carbon ion acceleration section using 750 MHz Interdigital H-mode Drift Tube Linacs (IH-DTLs) as a high-efficiency solution for accelerating ions in the 5–10 MeV per nucleon energy range. A particle-tracking routine based on the TRAVEL code was developed to design the acceleration line through a tailored KONUS-type configuration. Three design solutions were proposed and compared, exploring different alternatives regarding the use of a MEBT to match the output beam phase space of the RFQ to the optics of the line, as well as varying considerations for magnetic systems to focus the beam. Additionally, the compatibility of the proposed solutions with the existing design of the carbon ion bent-linac for hadron therapy was assessed.

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Cite This Study

Navarro et al. (2026) studied this question.

synapsesocial.com/papers/6969d488940543b977709787https://doi.org/10.1007/s41365-025-01870-6
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