DOI: 10.1017/s0022377826102086 ISSN: 0022-3778

Efficiency of non-resonant photon trap for future experiments on neutralisation of negative hydrogen ion beam

Magomedrizy Gadjimuradovich Atlukhanov, Alexander Vladimirovich Burdakov, Sergey Sergeevich Popov, Yuri Alexandrovich Trunev, Dmitry Ivanovich Skovorodin, Alexander Alexandrovich Kasatov, Igor Vladimirovich Shikhovtsev, Victor Viktorovich Kurkuchekov

This paper presents experimental investigations of a non-resonant photon trap featuring adiabatic radiation confinement, designed for the photoneutralisation of negative hydrogen ( H / D ) ion beams in fusion plasma injection heating systems. The trap is formed by two monolithic dielectric mirrors with high reflectivity. The study focuses on the methodology and results of measuring the confinement time and integral optical losses. The diagnostic approach is based on analysing the decay rate of radiation within the optical cavity following abrupt interruption of the pump source, utilising wire attenuators for signal reduction. The influence of the laser beam angular divergence on the accumulation efficiency is examined. The obtained data confirm the adiabatic nature of the photon confinement, demonstrate consistency between the measured losses and the specified mirror coating parameters and validate the feasibility of controlling the density of the photon ensemble within the trap. This work confirms the technical feasibility and potential of this approach for the development of high-efficiency photoneutralisation systems.

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