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Phase rotation scheme of laser-produced ions for reduction of the energy spread
Authors:A Noda  S Nakamura  Y Iwashita  S Sakabe  M Hashida  T Shirai  S Shimizu  H Tongu  H Ito  H Souda  A Yamazaki  M Tanabe  H Daido  M Mori  M Kado  A Sagisaka  K Ogura  M Nishiuchi  S Orimo  Y Hayashi  A Yogo  S Bulanov  T Esirkepov  A Nagashima  T Kimura  T Tajima  T Takeuchi  K Matsukado  A Fukumi  Z Li
Institution:(1) Institute for Chemical Research (ICR), Kyoto University, Gokano-sho, Uji-city, Kyoto 611-0011, Japan;(2) Advanced Photon Research Center, Kansai Research Establishment, Japan Atomic Energy Research Institute (JAERI), Umemi-dai 8-1, Kidu-cho, Soraku-gun, Kyoto 619-0215, Japan;(3) National Institute of Radiological Sciences (NIRS), Anagawa 4-9-1, Inage-ku, Chiba-city, Chiba 263-8555, Japan
Abstract:In order to widely spread out particle beams utilized in cancer therapy, laser-produced ions are developed as the injection beam for an ion synchrotron dedicated for cancer therapy. Such a laser ion source is expected to contribute largely to the realization of compactness of the size and low cost of the cancer therapy accelerator. The energy spectrum of the laser-produced ions, however, has no peak, but their intensities decrease exponentially according to the increase of the energy. For the purpose of modifying such a situation, we have proposed a scheme to rotate the beam in the longitudinal phase space with the use of the RF electric field, which is phase-adjusted with the pulse laser. We aim for a reduction of the energy spread of ± 5% selected by an energy analyzer and slits to ±1% by such phase rotation. For this purpose, a quarter wavelength resonator with two gaps with the same resonant frequency as the source laser has already been fabricated, together with its RF power source. The above phase rotation system and its recent experimental realization are presented.
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