Spectral and spatial shaping of laser-driven proton beams using a pulsed high-field magnet beamline

Author:

Brack Florian-EmanuelORCID,Kroll FlorianORCID,Gaus Lennart,Bernert Constantin,Beyreuther Elke,Cowan Thomas E.ORCID,Karsch Leonhard,Kraft StephanORCID,Kunz-Schughart Leoni A.ORCID,Lessmann Elisabeth,Metzkes-Ng JosefineORCID,Obst-Huebl LieselotteORCID,Pawelke Jörg,Rehwald MartinORCID,Schlenvoigt Hans-PeterORCID,Schramm UlrichORCID,Sobiella Manfred,Szabó Emília Rita,Ziegler TimORCID,Zeil KarlORCID

Abstract

AbstractIntense laser-driven proton pulses, inherently broadband and highly divergent, pose a challenge to established beamline concepts on the path to application-adapted irradiation field formation, particularly for 3D. Here we experimentally show the successful implementation of a highly efficient (50% transmission) and tuneable dual pulsed solenoid setup to generate a homogeneous (laterally and in depth) volumetric dose distribution (cylindrical volume of 5 mm diameter and depth) at a single pulse dose of 0.7 Gy via multi-energy slice selection from the broad input spectrum. The experiments were conducted at the Petawatt beam of the Dresden Laser Acceleration Source Draco and were aided by a predictive simulation model verified by proton transport studies. With the characterised beamline we investigated manipulation and matching of lateral and depth dose profiles to various desired applications and targets. Using an adapted dose profile, we performed a first proof-of-technical-concept laser-driven proton irradiation of volumetric in-vitro tumour tissue (SAS spheroids) to demonstrate concurrent operation of laser accelerator, beam shaping, dosimetry and irradiation procedure of volumetric biological samples.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 41 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Laser-plasma ion beam booster based on hollow-channel magnetic vortex acceleration;Physical Review Research;2024-08-07

2. Laser-plasma accelerated proton beam transport system using high-field pulsed solenoid magnet;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2024-08

3. Laser-driven acceleration of a 94.8 MeV uniform proton beam enhanced by a thin axial absorber rod;Physical Review Accelerators and Beams;2024-07-22

4. Design and Implementation of an Energy Selector for Laser-Accelerated Protons;Instruments;2024-06-29

5. Towards ion stopping power experiments with the laser-driven LIGHT beamline;Journal of Plasma Physics;2024-05-16

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