Journal Article

·2026 OPEN ACCESS

Radiation-resistant C-type dipole dump magnet for MIR/THz FEL applications at TARLA

Kubilay Bayramoglu , Fedai İnanır YTU , Zuhal Oktay YTU , Can Coşkun YTU , Sükrü Yıldız , Özgür Akcalı YTU , Memet Yılmaz YTU , Haris Dapo

Scientific Reports

Abstract

Radiation-induced degradation is a key challenge for dipole magnets used in beam dump systems of free-electron laser (FEL) facilities. This study presents the design and experimental validation of a compact, radiation-resistant C-type dipole dump magnet developed for the MIR/THz FEL at the Turkish Accelerator and Radiation Laboratory (TARLA). The magnet deflects electron beams of up to 45 MeV by 42°, enabling safe beam disposal under radiation-intensive conditions. A radiation-informed design approach combining magnetic material characterization, electromagnetic modeling, and Monte Carlo radiation transport simulations was employed. Electrical steel with high iron content was selected to ensure sufficient saturation margin and magnetic stability in the fringe-field-dominated geometry. Coupled MCNP–COMSOL analyses showed that the combined radiation and resistive heating leads to a maximum coil temperature rise of only 18.7 °C, allowing reliable air-cooled operation. A parallel winding scheme was adopted to reduce Joule losses and enhance thermal margins. Neutron shielding experiments using a locally developed composite material achieved up to 99% attenuation, confirming the effectiveness of the shielding design. The proposed magnet provides a compact and radiation-tolerant solution for FEL beam dump systems.

Keywords

Beam dump Magnet Electromagnetic shielding Resistive touchscreen Beam (structure) Neutron radiation Electromagnetic coil Electromagnet Dipole Joule heating Nuclear engineering

Subject Areas

Particle Accelerators and Free-Electron Lasers ·Electrical and Electronic Engineering ·Physical Sciences
Superconducting Materials and Applications ·Biomedical Engineering ·Physical Sciences
Particle accelerators and beam dynamics ·Aerospace Engineering ·Physical Sciences