2011•Presented atRequires access

Development of an S-band Multi-cell Accelerating Cavity for RF Gun and Booster Linac

Masafumi Fukuda, Norio Kudo, Tetsuya TAKATOMI, N. Terunuma, Junji Urakawa, Masakazu Washio, Kazuyuki Sakaue, A. Deshpande, Tsuyoshi Aoki

Open publisher page 0 citations

Abstract

We have been developing a photocathode rf gun. The rf gun with multi cell can produce a high energy electron beam, so it may be used for numerous applications such as medicine and industry. At the Laser Undulator Compact X-ray source facility, called LUCX, we have developed a compact X-ray source based on inverse Compton scattering [1]. An S-band 3.5 cell rf electron gun which is 20 cm long can produce a high quality electron beam with energy of 8.7 MeV. According to the simulation, the emittance of 3.5 cell rf gun is as low as that of 1.6 cell rf gun. The electromagnetic design has been performed by the code SUPERFISH, and the particle tracing by PARMELA. The new rf gun is already installed and produced a high quality electron beam with energy of 8.7 MeV. As a consequence of the substantial efforts of developing rf cavity, we decide t o make a compact RF accelerating structure with more cell for achieving a smaller system. The measurement results of using the 3.5 cell rf gun, the design of 12 cell booster cavity, and current status of 12 cell cavity manufacturing will be presented at the conference.

About this research paper

What this paper is about

We have been developing a photocathode rf gun. The rf gun with multi cell can produce a high energy electron beam, so it may be used for numerous applications such as medicine and industry. At the Laser Undulator Compact X-ray source facility, called LUCX, we have developed a compact X-ray source based on inverse Compton scattering [1]. An S-band 3.5 cell rf electron gun which is 20 cm long can produce a high quality electron beam with energy of 8.7 MeV. According to the simulation, the emittance of 3.5 cell rf gun is as low as that of 1.6 cell rf gun. The electromagnetic design has been performed by the code SUPERFISH, and the particle tracing by PARMELA. The new rf gun is already installed and produced a high quality electron beam with energy of 8.7 MeV. As a consequence of the substantial efforts of developing rf cavity, we decide t o make a compact RF accelerating structure with more cell for achieving a smaller system. The measurement results of using the 3.5 cell rf gun, the design of 12 cell booster cavity, and current status of 12 cell cavity manufacturing will be presented at the conference.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

We have been developing a photocathode rf gun. The rf gun with multi cell can produce a high energy electron beam, so it may be used for numerous applications such as medicine and industry. At the Laser Undulator Compact X-ray source facility, called LUCX, we have developed a compact X-ray source based on inverse Compton scattering [1]. An S-band 3.5 cell rf electron gun which is 20 cm long can produce a high quality electron beam with energy of 8.7 MeV. According to the simulation, the emittance of 3.5 cell rf gun is as low as that of 1.6 cell rf gun. The electromagnetic design has been performed by the code SUPERFISH, and the particle tracing by PARMELA. The new rf gun is already installed and produced a high quality electron beam with energy of 8.7 MeV. As a consequence of the substantial efforts of developing rf cavity, we decide t o make a compact RF accelerating structure with more cell for achieving a smaller system. The measurement results of using the 3.5 cell rf gun, the design of 12 cell booster cavity, and current status of 12 cell cavity manufacturing will be presented at the conference.

Key concepts: Electron gun, Linear particle accelerator, Photocathode, Thermal emittance, Booster (rocketry), Radio frequency, Physics, Optics

Related papers

Back to paper searchBrowse research topicsOriginal source
Development of an S-band Multi-cell Accelerating Cavity for RF Gun and Booster Linac — Research Paper | ScholarLens