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1.
中国原子能科学研究院已经建成一台"在线同位素分离器"(BRISOL),在线产生并分离出需要的放射性离子束用于天体物理、核结构和材料科学等研究。其中研制的放射性核束鉴别装置,用来测量并鉴别能量30~300 ke V、束流强度在10~4~10^(11)Particle/s放射性离子束(RIB)的种类。介绍了该装置的原理、组成及调试结果。该装置结构紧凑,可在有限空间内完成核素的积累、转运和能谱测量。该装置已经用于"在线同位素分离器"的在线调试,通过在线获取的射线能谱确认了产生的38K+放射性同位素并给出放射性束流的强度。  相似文献   

2.
北京放射性离子束装置(Beijing Radioactive Ion-beam Facility,BRIF)是基于在线同位素分离器技术的国家大科学平台。在BRIF装置上利用100 MeV的质子束轰击较厚的反应靶产生放射性核素;反应产物经离子源电离和在线分离,在线同位素分离段可引出100~300 keV的放射性核束,质量分辨率达20 000。在基金委科学仪器基础研究专项的支持下,建成了多用途的衰变实验终端,包括束流传输管道、通用靶室、带电粒子和γ探测器、集成电子学和数据获取系统等。利用100 MeV的质子束轰击MgO厚靶产生了流强高达1×105pps的~(20)Na放射性核束。通过高效率地同时测量β,γ和α,第一次直接观测到~(20)Na非常稀有的β-γ-α衰变模式。  相似文献   

3.
中国原子能科学研究院已经建成一台"在线同位素分离器"(BRISOL),在线产生并分离出需要的放射性离子束用于天体物理、核结构和材料科学等研究。其中研制的放射性核束鉴别装置,用来测量并鉴别能量30~300 ke V、束流强度在10~4~10~(11)Particle/s放射性离子束(RIB)的种类。介绍了该装置的原理、组成及调试结果。该装置结构紧凑,可在有限空间内完成核素的积累、转运和能谱测量。该装置已经用于"在线同位素分离器"的在线调试,通过在线获取的射线能谱确认了产生的38K+放射性同位素并给出放射性束流的强度。  相似文献   

4.
北京放射性离子束装置(Beijing Radioactive Ion-beam Facility,BRIF)是基于在线同位素分离器技术的国家大科学平台。在BRIF装置上利用100 MeV的质子束轰击较厚的反应靶产生放射性核素;反应产物经离子源电离和在线分离,在线同位素分离段可引出100~300 keV的放射性核束,质量分辨率达20 000。在基金委科学仪器基础研究专项的支持下,建成了多用途的衰变实验终端,包括束流传输管道、通用靶室、带电粒子和γ探测器、集成电子学和数据获取系统等。利用100 MeV的质子束轰击MgO厚靶产生了流强高达1×105 pps的20Na放射性核束。通过高效率地同时测量β,γ和α,第一次直接观测到20Na非常稀有的β-γ-α衰变模式。Beijing Radioactive Ion-beam Facility(BRIF) has been commissioned as the national Radioactive Ion Beam(RIB) facility based on the Isotope Separator On Line(ISOL) technique since 2016. At BRIF, the radioactive nuclides are produced by the proton beam of 100 MeV bombarding a thick-target, the reaction products diffusing out of the target are ionized by an ion source and delivered to the online mass separator. In addition to the post-accelerated radioactive ion beams, BRIF can provide low-energy ISOL beams of 100 to 300 keV with a mass resolution of 20 000. A general-purpose decay station has been built including the ISOL beam transport line, a conventional reaction chamber, charge-particle and γ detectors with integrated electronics and data acquisition system. An intense 20Na ISOL beam up to 1×105 pps was produced by using the 100 MeV proton beam bombarding a MgO thick target. With high-efficiency measurements of β, γ and α simultaneously, very rare β-γ-α decay mode in 20Na has been directly observed for the first time in the present work.  相似文献   

5.
介绍了世界上主要的放射性核束装置,并对当前放射性核束物理研究的前沿方向作了评述.同时,也展望了放射性核束装置的发展趋势.Several Radioactive Ion Beam (RIB) lines are briefly introduced in this paper, and the main frontier fields of RIB physics are reviewed.In the last section,the developing trends of RIB setup are prospected.   相似文献   

6.
张天爵 《中国物理 C》2002,26(3):290-298
产生放射性核束的在线同位素分离装置的靶系统设计是整个装置产生效率的关键环节.在ORNL的窄高斯分布的离子注入模型的基础上,研究了不同的靶的几何形状和尺寸、不同的温度条件、半衰期不同的放射性核素等对释放时间特性的影响,这对设计具有快速释放过程的靶系统,具有直接的实用价值.基于德国ZFK关于表面物理的实验测量数据,用MonteCarlo统计的方法来模拟放射性核素从靶材料表面到在线离子源的电离室的传输过程,对大量的放射性核素–传输管材料组合,和不同尺寸的传输管进行了统计计算,从这些统计计算中得到了可用于传输管工程设计的图表和经验公式.  相似文献   

7.
北京放射性核束装置在线同位素分离器(Beijing Radioactive Ion-beam Facilities Isotope Separator On-line)利用回旋加速器提供的100 Me V高能质子束轰击靶材料产生放射性核束。高能质子束轰击靶材料产生的最高10^(14)n/s的中子及很强的γ射线会对靶附件的设备造成严重的活化。为了解决靶源系统设备的维护问题,靶源系统采用模块化设计。靶源系统共分为3个模块,每个模块具有独立的水冷、供电及电信号馈入。真空、水、电、气等可以伴随模块的插拔自动接通或者断开。各模块可以通过特制的吊钩远程抓取或者释放,借助监控系统,实现各个模块从靶源间到热室的远程转运。该系统已完成了安装和调试,并已投入使用。  相似文献   

8.
北京放射性核束装置在线同位素分离器(Beijing Radioactive Ion-beam Facilities Isotope Separator On-line)利用回旋加速器提供的100 Me V高能质子束轰击靶材料产生放射性核束。高能质子束轰击靶材料产生的最高10~(14)n/s的中子及很强的γ射线会对靶附件的设备造成严重的活化。为了解决靶源系统设备的维护问题,靶源系统采用模块化设计。靶源系统共分为3个模块,每个模块具有独立的水冷、供电及电信号馈入。真空、水、电、气等可以伴随模块的插拔自动接通或者断开。各模块可以通过特制的吊钩远程抓取或者释放,借助监控系统,实现各个模块从靶源间到热室的远程转运。该系统已完成了安装和调试,并已投入使用。  相似文献   

9.
 质子束窗是在高功率靶区中的一个分界窗,它将质子输运线上高真空区域和氦容器中的氦环境分开。在其他散裂中子源中质子束窗的热效应以及机械问题都已经被研究过了,但质子束在该窗中散射效应的研究却很少被报导,然而在靶设计中如果没有处理好质子束窗的散射效应会有很大的问题。报导了质子束窗散射效应的模拟计算结果,包括不同质子束窗的材料和结构选择,并以中国散裂中子源(CSNS)为例,介绍了在CSNS一期和二期中质子束窗采用周边水冷的铝合金单层结构,CSNS三期采用中间水冷的铝合金夹层结构。文中给出了不同结构的质子束窗和不同的与靶距离散射效应对靶上经非线性磁铁均匀化的束流分布的影响的模拟计算结果。模拟结果显示质子窗的散射效应对束流损失和靶上的束流分布有重要的影响。  相似文献   

10.
孟晓慧  董志伟 《强激光与粒子束》2018,30(6):064002-1-064002-5
基于粒子云网格计算方法,对质子束轰击靶面产生二次电子的效应进行了模拟研究,得到了不同电场强度对质子束的品质以及其产生的二次电子的数量的影响。研究表明,50 kV电压下,质子束束腰宽度1.8 mm,并有近10%的质子束打在阴极侧壁上;150 kV电压下,质子束束腰宽度1.2 mm。这说明,抽取电场强度小时质子束分散,其束流品质下降;抽取电场强度大时质子束紧凑。通过调控抽取、加速电压,可以有效地控制到靶质子流的聚散状况,以及由此产生的二次电子的强度及分布。  相似文献   

11.
Thermal stress-waves are generated in the solid target material when the proton beam interacts. These stress waves excite natural oscillations of the target or cause plastic deformations. Hence, an experimental setup with a laser Doppler vibrometer [CITE] was developed to investigate free surface vibrations of cylindrical targets. The target configurations for RIB and conventional neutrino beams (CNGS project) were investigated to analyze proton induced thermal stress-wave generation and propagation.  相似文献   

12.
fs激光在靶背表面产生的质子束成丝   总被引:5,自引:2,他引:3       下载免费PDF全文
 介绍了利用3TW/60fs钛宝石超短超强激光与20μm铜薄膜靶相互作用的实验。实验观测到质子束的角分布随激光功率密度有所变化。在较高的功率密度(~1×1018 W/cm2)时,观测到环状的质子束分布,发散角较大。在较低的激光功率密度(~2×1017 W/cm2)时,质子束发散角减小,质子束出现成丝现象。质子束的角分布实际上反映了从靶前输运到靶背的超热电子电流横向分布。在输运过程中,由于Weibel不稳定性会使超热电子电流出现空心化并最后破裂成丝。  相似文献   

13.
H.L Ravn 《Physics Reports》1979,54(3):201-259
Electromagnetic mass separation applied on-line to accelerators and nuclear reactors is now a standard technique for producing preselected isotopic beams (A, Z selection) of nuclear reaction products. The development, performance and anatomy of a large on-line isotope separator facility, the CERN-ISOLDE, is discussed. As a result of recent technical developments it is now possible to study individual nuclei of about 40 elements, in many cases out to where the limits of nucleon binding are approached and half-lives become as short as 10 ms. It is shown that the nuclear reaction processes induced with the high-intensity several hundred MeV proton beam can provide secondary radioactive beams in almost all regions of the nuclidic chart with intensities which are not matched by any other method. The intense beams of 108–1011 atoms/s have opened up a number of new experimental possibilities like laser spectroscopy on radioactive atoms, radioactive targets for nuclear reaction spectroscopy, and precision X-ray shift measurements.  相似文献   

14.
在北京串列实验室建立了次级束流实验装置 ,用于放射性核束物理和核天体物理研究 .先后开展了7Be(d ,n) 8B ,11C(d ,n) 12 N ,8Li(d ,p) 9Li和6 He(p ,n) 6 Li核天体物理重要反应的研究 .介绍了串列加速器升级工程的进展情况 .该工程在现有串列加速器的基础上 ,将建立 10 0MeV/ 2 0 0 μA的质子回旋加速器、在线同位素分离器和超导加速段 .在此装置上 ,将可以产生质量数最高为 12 0 ,强度最高为 10 9particles/s的放射性束流 . A secondary beam line (GIRAFFE) at the Beijing Tandem accelerator lab was constructed for yielding low energy secondary beams. The current progress on the study of nuclear astrophysics and nuclear structure is presented. Up to now, We have carried out measurement of~(7)Be(d, n)~( 8)B,~(11)C(d, n)~(12)N,~(8)Li(d, p)~(9)Li, and~(6)He(p, n)~(6)Li reactions. The proposed Beijing radioactive nuclear beam facility (BRIF ) and its current R&D progress are briefly introduced. This facility is based on...  相似文献   

15.
ARIEL front end     
The ARIEL project at TRIUMF will greatly expand the variety and availability of radioactive ion beams (RIBs) (Laxdal, Nucl Inst Methods Phys Res B 204:400–409, 2003). The ARIEL front end connects the two ARIEL target stations to the existing ISAC facility to expand delivery to two and eventually three simultaneous RIB beams with up to two simultaneous accelerated beams (Laxdal et al. 2008). The low-energy beam transport lines and mass separators are designed for maximum flexibility to allow a variety of operational modes in order to optimize the radioactive ion beam delivery. A new accelerator path is conceived for high mass delivery from an EBIS charge state breeder. The front-end design utilizes the experience gained in 15 years of ISAC beam delivery.  相似文献   

16.
For fifty years the isotope separation on-line (ISOL) technique has been used for the production of radioactive-ion beams (RIBs). Thick-target ISOL facilities can provide very intense RIBs for a wide range of applications. The important design parameters for an ISOL facility are efficiency, rapidity and selectivity of all steps of the separation process. To achieve the anticipated beam intensities with the next-generation RIB facilities, the production rate in the ISOL target has to be increased by orders of magnitude. This is only possible by adapting the projectile beam for optimum production cross-sections and simultaneously minimizing the target heating due to the electronic stopping power of charged-particle projectiles. ISOL beams of 75 different elements have been produced up to now and further beam development is under way to produce a still greater variety of isotopes and to improve existing beams in intensity and purity. Received: 21 March 2002 / Accepted: 16 May 2002 / Published online: 31 October 2002 RID="a" ID="a"e-mail: Ulli.Koster@cern.ch  相似文献   

17.
《Nuclear Physics A》1995,588(1):c273-c276
A radioactive ion beam facility, GIRAFFE, has been built at the CIAE HI-13 Tandem accelerator. The facility makes use of the inverse kinematics. A D-Q-Q type magnetic separation and focusing system was used in the beam line. This simple device is expected to yield some radioactive ion beams(A<20) near the β-stability line with the acceptable intensities(105–106 pps). The ion beams of 7Be, 11C and 17F were delivered, and the 7Be beam was applied for two experiments.  相似文献   

18.
Nuclear reactions using proton beams and tin targets are studied in order to obtain antimony radionuclides. A new target system that includes on-line monitoring of target heating is used. To determine the parameters of proton beams, experimental studies on nuclear reactions are performed using Ti, Cu and stainless steel targets. Using modern model approximations, cross sections are determined for the formation of radionuclides 119Sb and 117Sb in the investigated nuclear reactions.  相似文献   

19.
A new RIB project, the Beijing Radioactive Ion-beam Facility (BRIF), has been running at CIAE since 2004. In this project, a 100 MeV H-cyclotron, CYCIAE-100, is selected as the driving accelerator providing a 75-100 MeV, 200-500 μA proton beam. An ISOL system employs two stage separators to reach the mass resolution of 20000. Its RIB beam will be injected into the existing Tandem and a superconducting booster installed down stream of the Tandem will increase the energy by 2 MeV/q. The progress of BRIF, giving special emphasis to CYCIAE-100, will be introduced in this paper.  相似文献   

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