Experimental demonstration of radius-varying active plasma lensing for laser-plasma-accelerated proton beams with increased collection angle

Author:

Yan Yang12ORCID,Yang Tong12,Guo Zhen12ORCID,Huang Mingfeng12ORCID,Cheng Hao12,Li Yuze12,Fang Yanlv12,Li Chentong12,Xia Yadong12,He Qiangyou12,Yan Yiting12ORCID,Lin Chen123,Yan Xueqing123

Affiliation:

1. State Key Laboratory of Nuclear Physics and Technology, and Key Laboratory of HEDP of the Ministry of Education, CAPT, Peking University, Beijing, 100871, China

2. Beijing Laser Acceleration Innovation Center, Huairou, Beijing, 101407, China

3. Institute of Guangdong Laser Plasma Technology, Baiyun, Guangzhou, 510475, China

Abstract

Active plasma lensing, a compact method for intensifying the focus of charged particle beams by providing a magnetic field gradient of kT/m, has emerged as a sought-after technology in laser plasma accelerator applications. However, the utilization of active plasma lenses faces significant hurdles when dealing with laser-driven proton pulses, characterized by their broad bandwidth and high divergence. To address this challenge, we developed a novel active plasma lens with a variable radius, specifically designed to optimize lens geometry in accordance with the beam envelope, and performed the first measurement of its focusing ability. The experimental findings reveal that, compared to conventional cylindrical active plasma lenses, our radius-varying lens exhibits a 2.0-fold improvement in single-energy transmission efficiency, while maintaining comparable achromatic ability. This breakthrough is anticipated to significantly contribute to the miniaturization of laser proton accelerators. Published by the American Physical Society 2024

Funder

National Natural Science Foundation of China

National Grand Instrument Project

Publisher

American Physical Society (APS)

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