GV m−1 on-chip particle accelerator driven by few-cycle femtosecond laser pulse

Author:

Sun Li,Liu WeihaoORCID,Zhou Jie,Zhu Yunliang,Yu Zijia,Liu YuchengORCID,Jia QikaORCID,Sun Baogen,Xu Hongliang

Abstract

Abstract Particle accelerator on chip with high acceleration gradient has been an unremitting goal of researchers. Dielectric laser accelerator (DLA) is a possible candidate to achieve this goal. However, due to the limitation of dielectric breakdown, it is difficult for the available DLAs to reach an acceleration gradient as high as 1 GV m−1 since a long-duration multi-cycle laser pulse with high fluence have to be used. Here we propose to use a few-cycle laser pulse to drive a DLA based on the inverse Cherekov radiation effect. It significantly reduces the required pulse duration and the laser fluence, remarkably increasing the achievable acceleration gradient. Moreover, by using a cascade acceleration scheme, we realize a high energy-gain acceleration for low-energy electrons in a microscale device by simulation, which paves the way for the development of a fully on-chip particle accelerator.

Funder

Joint Founds of the X LAB, The Second Academy of CASIC

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference41 articles.

1. A proposed dielectric-loaded resonant laser accelerator;Rosenzweig;Phys. Rev. Lett.,1995

2. Laser acceleration of relativistic electrons using the inverse Cherenkov effect;Kimura;Phys. Rev. Lett.,1995

3. Photonic band gap fiber accelerator;Lin;Phys. Rev. Spec. Top. Accel. Beams,2001

4. Prism-coupled surface wave accelerator based on silicon carbide;Neuner;Phys. Rev. Spec. Top. Accel. Beams,2012

5. Optical Bragg accelerators. Optical Bragg accelerators;Mizrahi;Phys. Rev. E,2004

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