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Dive into the research topics where Mao Li-Jun is active.

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Featured researches published by Mao Li-Jun.


Chinese Physics C | 2009

COMMISSIONING OF ELECTRON COOLING IN CSRM

Yang Xiaodong; Li Jie; Mao Li-Jun; Li Guo-Hong; Zhan Wenlong; Xia Jia-Wen; Zhao Hongwei; Xiao Guo-Qing; Yuan You-Jin; Song Ming-Tao; Liu Yong; Yang Jian-Cheng; Gao Daqing; Zhou Zhongzu; He Yuan; Zhang Wei; Zhang Jianhua; Mao Rui-Shi; Zhao Tie-Cheng; Parkhomchuk Vasily

The 400 MeV/u 12C6+ ion beam was successfully cooled by the intensive electron beam near 1 A in CSRe. The momentum cooling time was estimated near 15 s. The cooling force was measured in the cases of different electron beam profiles, and the different angles between the ion beam and electron beam. The lifetime of the ion beam in CSRe was over 80 h. The dispersion in the cooling section was confirmed as positive close to zero. The beam sizes before cooling and after cooling were measured by the moving screen. The beam diameter after cooling was about 1 mm. The bunch length was measured with the help of the signals from the beam position monitor. The diffusion was studied in the absence of the electron beam.


Chinese Physics C | 2009

A pilot experiment for mass measurement at CSRe

Tu Xiao-Lin; Xu Hu-Shan; Xia Jia-Wen; Wang Meng; Mao Rui-Shi; Yuan You-Jin; Hu Zheng-Guo; Liu Yong; Zhang Hong-Bin; Zang Yong-Dong; Zhao Tie-Cheng; Zhang Xue-Ymg; Fu Fen; Yang Jian-Cheng; Mao Li-Jun; Xiao Chen; Xiao Guo-Qing; Zhao Hongwei; Zhan Wen-Long

A pilot experiment of mass measurement was performed at CSRe with the method of isochronous mass spectrometry. The secondary fragments produced via RIBLL2 with the primary beam of 400 MeV/u, Ar-36 delivered by CSRm were injected into CSRe. The revolution periods of the stored ions, which depend on the mass-to-charge ratios of the stored ions, were measured with a time-of-flight detector system. The results show that the mass resolution around 8 x 10(-6) for Delta m/m is achieved.


Chinese Physics C | 2009

HIRFL-CSR complex

Xia Jia-Wen; Zhan Wenlong; Wei Bao-Wen; Yuan You-Jin; Yuan Ping; Qiao Wei-min; Gao Daqing; Yang Xiaotian; Man Kai-Di; Xiao Guo-Qing; Zhao Hongwei; Yang Xiaodong; Cai Xiao-Hong; Song Ming-Tao; Xu Hushan; Ma Lizhen; Liu Yong; He Yuan; Zhou Zhongzu; Zhang Wei; Xu Zhe; Mao Rui-Shi; Zhang Junhui; Jing Lan; Yang Ya-Qing; Yang Jian-Cheng; Mao Li-Jun; Chen Youxin

The construction and commissioning of HIRFL-CSR were finished in 2007. From 2000 to 2005 the subsystem and key devices of CSR were successfully fabricated, such as magnet, power supply, UHV system, e-cooler, electric-static deflector with the septum of 0.1 mm, and the fast-pulse kicker with the rise time of 150 ns. After that the CSR commissioning activities were performed in 2006 and 2007, including the accumulation of those heavy ions of C, Ar, Kr and Xe by the combination of stripping injection (STI) or multiple multi-turn injection (MMI) and e-cooling with a hollow e-beam, wide energy-range synchrotron ramping by changing the RF harmonic-number at mid-energy, the beam stacking in the experimental ring CSRe, the RIBs mass-measurement with the isochronous-mode in CSRe by using the time-of-flight method, and the ion beam slow-extraction from CSRm.


Chinese Physics C | 2013

Research on the detuning system of a cooling electron beam for the dielectronic recombination experiment at CSRm

Ma Xinwen; Vasily Parkhomchuk; Yang Xiaodong; V. B. Reva; Li Jie; Mao Li-Jun; Ma Xiao-Ming; Yan Tai-Lai; Xia Jia-Wen; Yuan You-Jin; Xu Hu-Shan; Yang Jian-Cheng; Xiao Guo-Qing

A storage ring equipped with an electron cooler is an ideal platform for dielectronic recombination (DR) experiments. In order to fulfill the requirement of DR measurements at the main Cooler Storage Ring, a detuning system for the precision control of the relative energy between the ion beam and the electron beam has been installed on the electron cooler device. The test run using 7.0 MeV/u C6+ beam was performed with recording the Schottky spectra and the ion beam currents. The influence of pulse heights and widths of the detuning voltage on the ion beam was analyzed. For the small pulse height, the experimental results from the Schottky spectra were in good agreement with the theoretical results. The frequency shift in the Schottky spectra was significantly reduced for the short pulse width. For the large pulse height, an oscillation phenomenon was observed and some effective ways to reduce the oscillation were pointed out. The detailed description of the phenomenon and the theoretical model based on the plasma oscillation is discussed in this paper. The overall results show that the new detuning system works properly, and could fulfill the requirements of future DR experiments.


Chinese Physics C | 2009

HIRFL-CSR commissioning in 2006 and 2007

Xia Jia-Wen; Yuan You-Jin; Liu Yong; Yang Jian-Cheng; Xu Hushan; Xiao Guo-Qing; Yang Xiaodong; Zhang Wei; Gao Daqing; Zhou Zhongzu; Mao Rui-Shi; Mao Li-Jun; He Yuan; Xu Zhe; Yang Ya-Qing; Xiao Chen; Yin Dayu; Zhao Tie-Cheng; Wu Junxia; Li Guo-Hong; Li Jie; Li Peng; Li Ke; Hu Zheng-Guo

HIRFL-CSR, a new heavy ion cooler-storage-ring system at IMP, had been in commissioning since the beginning of 2006. In the two years of 2006 and 2007 the CSR commissioning was finished, including the stripping injection (STI), electron-cooling with hollow electron beam, C-beam stacking with the combination of STI and e-cooling, the wide energy-range synchrotron ramping from 7 MeV/u to 1000 MeV/u by changing the RF harmonic-number at mid-energy, the multiple multi-turn injection (MMI), the beam accumulation with MMI and e-cooling for heavy-ion beams of Ar, Kr and Xe, the fast extraction from CSRm and single-turn injection to CSRe, beam stacking in CSRe and the RIBs mass-spectrometer test with the isochronous mode in CSRe by using the time-of-flight method.


Chinese Physics C | 2015

Side-effects of the space charge field introduced by a hollow electron beam in the electron cooler of CSRm*

Tang Mei-Tang; Yang Xiaodong; Mao Li-Jun; Li Jie; Ma Xiao-Ming; Yan Tai-Lai; Zheng Wen-Heng; Zhao He; Wu Bo; Wang Geng; Ruan Shuang; Sha Xiao-Ping

An electron cooler is used to improve the quality of the ion beam in a synchrotron; however it also introduces a nonlinear electromagnetic field to the accelerator, which causes tune shift, tune spread and may drive resonances leading to ion beam loss. In this paper the tune shift and the tune spread caused by the nonlinear electromagnetic field of a hollow electron beam is investigated, and the resonance driving terms of the nonlinear electromagnetic field are analysed. The differences are presented compared with a solid electron beam. Calculations are performed for 238U32+ ions of energy 1.272 MeV stored in the main Cooler Storage Ring (CSRm) at the Institute of Modern Physics, Lanzhou. It is found that in this situation the nonlinear field caused by the hollow electron beam does not lead to serious resonances.


Yuanzihewuli Pinglun | 2016

Design and Research of Merging Experiment Based on HIAF SRing

Shen Guodong; Yang Jian-Cheng; Wu Bo; Wang Kedong; Xia Jia-Wen; Mao Li-Jun; Chai Weiping; Shi Jian; Yin Dayu; Sheng Lina


Yuanzihewuli Pinglun | 2016

HIAF SRINGに基づく結合実験設計と研究【JST・京大機械翻訳】

Shen Guodong; Yang Jian-Cheng; Wu Bo; Wang Kedong; Xia Jia-Wen; Mao Li-Jun; Chai Weiping; Shi Jian; Yin Dayu; Sheng Lina


Chinese Physics C | 2016

HIRFL CSReでのビームエネルギー損失からの内部標的厚さと実験的光度の決定【Powered by NICT】

Shao Cao-Jie; Yu De-Yang; Lu Rong-Chun; Zhao Tie-Cheng; Mao Rui-Shi; Li Jie; Xue Ying-Li; Wang Wei; Yang Bian; Zhang Mingwu; Liu Junliang; Song Zhang-Yong; Cai Xiao-Hong; Chen Xi-Meng; Yin Dayu; Mao Li-Jun; Yang Xiaodong; Yang Jian-Cheng; Yuan You-Jin


Chinese Physics C | 2016

HIAFのCRingの非並行電子冷却により支持されたバリアバケットの投与方法【Powered by NICT】

Shen Guodong; Yang Jian-Cheng; Xia Jia-Wen; Mao Li-Jun; Yin Dayu; Chai Weiping; Shi Jian; Sheng Lina; Smirnov A; Wu Bo; Zhao He

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Yang Jian-Cheng

Chinese Academy of Sciences

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Xia Jia-Wen

Chinese Academy of Sciences

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Yuan You-Jin

Chinese Academy of Sciences

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Yang Xiaodong

Chinese Academy of Sciences

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Li Jie

Chinese Academy of Sciences

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Liu Yong

Chinese Academy of Sciences

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Mao Rui-Shi

Chinese Academy of Sciences

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Xiao Guo-Qing

Chinese Academy of Sciences

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Yin Dayu

Chinese Academy of Sciences

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Zhao Hongwei

Chinese Academy of Sciences

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