Yuan You-Jin
Chinese Academy of Sciences
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Featured researches published by Yuan You-Jin.
Chinese Physics C | 2009
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
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 | 2015
Xu Xing; Ge Zhuang; Meng Wang; Shuai Peng; C. Y. Fu; Yan Xinliang; Zhang Yu-Hu; S. Litvinov; Yuan You-Jin; X. L. Tu; Xu Hu-Shan; Xiangcheng Chen; Zhou Xiao-Hong; R.J. Chen; D.W. Liu; Wen Ge; Y.M. Xing; Wen-Jia Huang; Qi Zeng; Wei Zhang; Yuri A. Litvinov; Hu Xue-Jing
The concept of isochronous mass spectrometry (IMS) applying two time-of-flight (TOF) detectors originated many years ago at GSI. However, the corresponding method for data analysis has never been discussed in detail. Recently, two TOF detectors have been installed at CSRe and the new working mode of the ring is under test. In this paper, a data analysis method for this mode is introduced and tested with a series of simulations. The results show that the new IMS method can significantly improve mass resolving power via the additional velocity information of stored ions. This improvement is especially important for nuclides with Lorentz factor γ-value far away from the transition point γt of the storage ring CSRe.
Chinese Physics C | 2014
Zhang Xiao-Hu; Yuan You-Jin; Xia Jia-Wen; Yin Xue-Jun; Du Heng; Li Zhong-Shan
A room temperature heavy ion linac has been proposed as a new injector of the main Cooler Storage Ring (CSRm) at the Heavy Ion Research Facility in Lanzhou (HIRFL), which is expected to improve the performance of HIRFL. The linac injector can supply heavy ions with a maximum mass to charge ratio of 7 and an injection kinetic energy of 7.272 MeV/u for CSRm; the pulsed beam intensity is 3 emA with the duty factor of 3%. Compared with the present cyclotron injector, the Sector Focusing Cyclotron (SFC), the beam current from linac can be improved by 10–100 times. As the pre-accelerator of the linac, the 108.48 MHz 4-rod Radio Frequency Quadrupole (RFQ) accelerates the ion beam from 4 keV/u to 300 keV/u, which achieves the transmission efficiency of 95.3% with a 3.07 m long vane. The phase advance has been taken into account in the analysis of the error tolerance, and parametric resonances have been carefully avoided by adjusting the structure parameters. Kombinierte Null Grad Struktur Interdigital H-mode Drift Tube Linacs (KONUS IH-DTLs), which follow the RFQ, accelerate ions up to the energy of 7.272 MeV/u for CSRm. The resonance frequency is 108.48 MHz for the first two cavities and 216.96 MHz for the last 5 Drift Tube Linacs (DTLs). The maximum accelerating gradient can reach 4.95 MV/m in a DTL section with the length of 17.066 m, and the total pulsed RF power is 2.8 MW. A new strategy, for the determination of resonance frequency, RFQ vane voltage and DTL effective accelerating voltage, is described in detail. The beam dynamics design of the linac will be presented in this paper.
Chinese Physics C | 2009
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
Wen Wei-Qiang; Ma Xinwen; Zhang Dacheng; Zhu Xiaolong; Li Jie; Liu Huiping; Zhao Dongmei; Wang Zhi-Shuai; Mao Rui-Shi; Zhao Tie-Cheng; Wu Junxia; Ma Xiao-Ming; Yan Tai-Lai; Li Guo-Hong; Yang Xiaodong; Liu Yong; Yang Jian-Cheng; Yuan You-Jin; Xia Jia-Wen; Xu Hu-Shan; Xiao Guo-Qing; Zhao Hongwei
The longitudinal Schottky spectra of a radio-frequency (RF) bunched and electron cooled 22Ne10+ ion beam at 70 MeV/u have been studied by a newly installed resonant Schottky pick-up at the experimental cooler storage ring (CSRe), at IMP. For an RF-bunched ion beam, a longitudinal momentum spread of Δp/p = 1.6 × 10−5 has been reached with less than 107 stored ions. The reduction of momentum spread compared with a coasting ion beam was observed from Schottky noise signal of the bunched ion beam. In order to prepare the future laser cooling experiment at the CSRe, the RF-bunching power was modulated at 25th,50th and 75th harmonic of the revolution frequency, effective bunching amplitudes were extracted from the Schottky spectrum analysis. Applications of Schottky noise for measuring beam lifetime with ultra-low intensity of ion beams are presented, and it is relevant to upcoming experiments on laser cooling of relativistic heavy ion beams and nuclear physics at the CSRe.
Chinese Physics C | 2013
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 | 2010
Xiao Chen; He Yuan; Lu Yuan-Rong; Yuri Batygin; Yin Ling; Wang Zhijun; Yuan You-Jin; Liu Yong; Chang Wei; Du Xiao-Nan; Wang Zhi; Xia Jia-Wen
A 52 MHz Radio Frequency Quadrupole (RFQ) linear accelerator (linac) is designed to serve as an initial structure for the SSC-Linac system (injector into Separated Sector Cyclotron). The designed injection and output energy are 3.5 keV/u and 143 keV/u, respectively. The beam dynamics in this RFQ have been studied using a three-dimensional Particle-In-Cell (PIC) code BEAMPATH. Simulation results show that this RFQ structure is characterized by stable values of beam transmission efficiency (at least 95%) for both zero-current mode and the space charge dominated regime. The beam accelerated in the RFQ has good quality in both transverse and longitudinal directions, and could easily be accepted by Drift Tube Linac (DTL). The effect of the vane error and that of the space charge on the beam parameters have been studied as well to define the engineering tolerance for RFQ vane machining and alignment.
Chinese Physics C | 2008
Yuan You-Jin; Xia Jia-Wen; Li Peng; Yang Xiaodong
The charge stripping injection method has been adopted for the accumulation of light heavy ions in HIRFL-CSR. This method has some special requirements for the accelerating particles, and at the same time the structure of the injection orbit has to be changed. In this paper, the design of the orbit has been presented, as well as the calculation of the beam line matching. According to the result of commissioning, stripping injection can accumulate the beam to a higher current.
Chinese Physics C | 2010
Mei Li-Rong; Xu Zhe; Yuan You-Jin; Zhang Shenghu; Zhang Zhouli; Zhang Cong; Sun Liepeng; Jin Peng; Yue Weiming
In order to realize high energy density physics and plasma physics research at HIRFL-CSR, a magnetic alloy (MA)-loaded cavity has been studied. According to the theoretical calculation and simulation for the MA-loaded cavity, we achieved a better result. The MA-loaded cavity had a higher mu Q f value, with a higher shunt impedance and a higher accelerating gradient. The accelerating gradient was about 95 kV/m at 1.8003 MHz, 130 kV/m at 0.9000 MHz. Compared with the ferrite-loaded cavities that are used at HIRFL-CSR, with about 10 kV/m accelerating gradient, the MA-loaded cavity obviously has an advantage. The results of the theoretical calculation and the simulation, which meet the design requirements are in good agreement.