ELI Beamlines Facility, The Extreme Light Infrastructure ERIC, Za Radnicí 835, 252 41 Dolní Břežany, Czech Republic.
Phys Med Biol. 2023 Nov 6;68(22). doi: 10.1088/1361-6560/ad00a3.
Ultra-short electron beams are used as ultra-fast radiation source for radiobiology experiments aiming at very high energy electron beams (VHEE) radiotherapy with very high dose rates. Laser plasma accelerators are capable of producing electron beams as short as 1 fs and with tunable energy from few MeV up to multi-GeV with compact footprint. This makes them an attractive source for applications in different fields, where the ultra-short (fs) duration plays an important role. The time dynamics of the dose deposited by electron beams with energies in the range 50-250 MeV have been studied and the results are presented here. The results set a quantitative limit to the maximum dose rate at which the electron beams can impart dose.
超短电子束可用作超快辐射源,用于放射生物学实验,旨在实现具有极高剂量率的超高能电子束(VHEE)放疗。激光等离子体加速器能够产生最短可达 1fs 的电子束,并具有从几 MeV 到数 GeV 可调谐的能量,且具有紧凑的占地面积。这使得它们成为不同领域应用的有吸引力的源,其中超短(fs)持续时间起着重要作用。研究了能量在 50-250MeV 范围内的电子束沉积剂量的时间动态,这里给出了研究结果。这些结果对电子束能够施加剂量的最大剂量率设定了定量限制。