Jinlu Ruan
Xi'an Jiaotong University
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Featured researches published by Jinlu Ruan.
Review of Scientific Instruments | 2015
Jianfu Zhang; Xiaoping Ouyang; Suizheng Qiu; Guoguang Zhang; Jinlu Ruan; Xiaodong Zhang; Xianpeng Zhang; Shaohua Yang; Jiwen Song; Linyue Liu; Hongyun Li
A new compact magnetic proton recoil (MPR) neutron spectrometer has been designed for precise measurement of deuterium-tritium (DT) neutrons. This design is presented emphasizing the magnetic analyzing system, which is based on a compact quadrupole-dipole (QD) electromagnet. The focal plane detector (FPD) is also discussed with respect to application for the next step. The characteristics of the MPR spectrometer were calculated by using Monte Carlo simulation. A preliminary experiment was performed to test the magnetic analyzing system and the proton images of the FPD. Since the QD electromagnet design allows for a larger foil thickness and solid angle to be utilized, the MPR spectrometer defined in this paper can achieve neutron detection efficiency more than 5 × 10(-7) at an energy resolution of 1.5% for measuring DT neutrons.
Journal of Applied Physics | 2013
Jinliang Liu; Fang Liu; Xiaoping Ouyang; Bin Liu; Liang Chen; Jinlu Ruan; Z. M. Zhang; Jun Liu
In this paper, we study the effective decay time characteristic of CsI(Na) crystal under 239Pu alpha particle and 137Cs gamma-ray excitation using a single photon counting decay time measurement system. The measurement system employs a silicon optical fiber to couple and transit single photon. The slow decay time component of CsI(Na) crystal is 460–550 ns. We observe a 15 ns fast decay component under alpha particle excitation. In addition, we find that the primary stage of the falling edge in the decay time curve is non-exponential and drops rapidly when CsI(Na) crystal is excited by 239Pu alpha particles. Since the high density of self-trapped-excitons (STEs) is produced in alpha particle excitation process, we propose that the fast falling edge is corresponding to the quenching process of STEs which transit with non-radiation in the case of high excitation density. To prove this proposal, we excited the CsI(Na) crystal with sub-nanosecond intensive pulsed X-ray radiation. Our X-ray impinging results sh...
Review of Scientific Instruments | 2017
Linyue Liu; Jinliang Liu; Jianfu Zhang; Liang Chen; Xianpeng Zhang; Z. M. Zhang; Jinlu Ruan; Peng Jin; Song Bai; Xiaoping Ouyang
Silicon carbide radiation detectors are attractive in the measurement of the total numbers of pulsed fast neutrons emitted from nuclear fusion and fission devices because of high neutron-gamma discrimination and good radiation resistance. A fast-neutron detection system was developed based on a large-area 4H-SiC Schottky diode detector and a 235U fission target. Excellent pulse-height spectra of fission fragments induced by mono-energy deuterium-tritium (D-T) fusion neutrons and continuous energy fission neutrons were obtained. The detector is proven to be a good candidate for pulsed fast neutron detection in a complex radiation field.
Optics Letters | 2017
Jinliang Liu; Bo Liu; Zhichao Zhu; Liang Chen; Jing Hu; Mengxuan Xu; Chuanwei Cheng; Xiaoping Ouyang; Z. M. Zhang; Jinlu Ruan; Shiyi He; Linyue Liu; Mu Gu; Hong Chen
It is intuitively expected that an enhanced light extraction of a scintillator can be easily achieved by photonic crystal structures. Here, we demonstrate a modified timing characteristic for a detection system induced by enhanced light extraction with photonic crystal structures. Such improvement is due to the enhanced light extraction which can be clearly proven by the independent measurements of the light output and the timing resolution. The present investigation is advantageous to promote the development of a scintillation detection system performance based on the time-of-flight measurement.
Journal of Radioanalytical and Nuclear Chemistry | 2015
Zi-ning Tian; Xiaoping Ouyang; Linyue Liu; Jinlu Ruan; Jinliang Liu
If we treat some heterogeneous distributed media including heterogeneous distributed radioactive sources, radioactive polluted field, “hot point/hot area” and “hot particle” as uniform distributed media, directly affects the accuracy of the detection efficiency calibrated, introduced the great metrical deviation. A Standard Normal distribution disc source was simulated by a point source experiment. The detection efficiency of heterogeneous distributed disc source is defined as multiply efficiency function of point source by the probability density function. And then we carried out process of the mathematical integrality and normalization. A description of the analysis and experimental results of this method are presented. The theoretical and experimental calculation of detection efficiency of HPGe detector for heterogeneous distribution disc source is consistent with each other.
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2012
Jinliang Liu; Xiaoping Ouyang; Liang Chen; Xianpeng Zhang; Jun Liu; Z. M. Zhang; Jinlu Ruan
Sensors and Actuators A-physical | 2017
Linyue Liu; Xiaoping Ouyang; X.P. Zhang; J.L. Liu; Jinlu Ruan; Peng Jin; Z.N. Tian; C.L. Su; R.H. Huang; Song Bai
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2014
Jinlu Ruan; Hongyun Li; Jian-fu Zhang; Z. M. Zhang; Liang Chen; Jiwen Song; Jinliang Liu; Jun Liu
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2018
Jun Liu; Xiaoping Ouyang; Xiufeng Weng; Z. M. Zhang; Haoyu Xie; Chunhua Li; Jinlu Ruan; Qing Xu
Volume 3: Nuclear Fuel and Material, Reactor Physics and Transport Theory; Innovative Nuclear Power Plant Design and New Technology Application | 2017
Jing Hu; Xiaoping Ouyang; Z. M. Zhang; Jinliang Liu; Liang Chen; Jinlu Ruan