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Positron-Lithium Atom and Electron-Lithium Atom Scattering Systems at Intermediate and High Energies 下载免费PDF全文
K. Ratnavelu S. Y. Ng 《中国物理快报》2006,23(7):1753-1756
The coupled-channel optical method is used to study positron scattering by atomic lithium at energies ranging from the ionization threshold to 60eV, The present method simultaneously treats the target channels and the positronium (Ps) channels in the coupled-channel method together with the continuum effects via an ab-initio optical potential. Ionization, elastic and inelastic cross sections in target channels, and the total cross section are also reported and compared with other theoretical and experimental data. A comparative study with the corresponding electron-lithium data is also reported. 相似文献
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在粒子加速器问世以前,科学家就利用天然放射性和宇宙红进行核物理的研究。1919年卢瑟福用放射性物质产生的α射红轰击原子核,首次实现了人工核反应。天然放射性粒子来之不难,但能量较低、强度很弱;宇宙红能量最高可达1022eV,却是"靠天吃饭",难以开展精确的实验。粒子加速器在20世纪30年代初发明后,很快成为核物理和粒子物理研究的主角。然而,随着粒子物理向高能量前沿的推进,加速器的规模成越来越大,位于瑞士和法国边境质心系1 相似文献
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在传统的固相法的基础上开发了新型复合共沉淀法制备LiNi0.5Mn1.5O4材料.新型复合共沉淀法采用(NH4)2CO3和(NH4)2C2O4共同作为沉淀剂,通过控制共沉淀反应条件,得到了具有均匀球形形貌的沉淀物颗粒.再通过与饱和氢氧化锂溶液的水热反应及高温反应,最终制备出具有球形次级形貌和纯相尖晶石结构的LiNi0.5Mn1.5O4材料.电化学测试表明,制备的LiNi0.5Mn1.5O4具有优异的电化学性能,其初始容量达到了141.4mAh·g-1.在0.3C、1C和3C倍率下经过200次循环后的容量分别为136.0 mAh·g-1(96.3%)、128.6 mAh·g-1(94.4%)和113.9 mAh·g-1(91.1%).通过高温反应及特殊的冷却处理,LiNi0.5Mn1.5O4在4.0 V低压区平台的容量损失得到了有效抑制.更重要的是,通过控制合成过程中的关键步骤,可实现半定量化控制材料结构中的原子有序排布程度,进而得到具有高能量密度和高功率密度的两种LiNi0.5Mn1.5O4材料,其能量密度和功率密度分别达到了648.6 mWh·g-1和7000 mW·g-1以上. 相似文献
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王正汹朱霄龙 《南昌大学学报(理科版)》2021,45(4):307
在托卡马克中,磁流体不稳定性与高能量离子相互作用是一个非常重要的问题,它对未来聚变堆稳态长脉冲运行至关重要。HL-2A是我国第一个具有先进偏滤器位形的非圆截面的托卡马克核聚变实验研究装置。撕裂模是托卡马克中的一种基本的电阻磁流体不稳定性,它可以改变磁场的拓扑结构,形成输运短路,甚至会触发大破裂。高能量离子在燃烧等离子体和各种外部辅助加热过程中是不可避免会产生的。目前,撕裂模与高能量离子相互作用依然存在一些关键性问题,例如撕裂模与高能量离子相互作用的共振关系、该物理过程导致高能量离子损失的物理机理等,并且还没有完整的关于撕裂模与高能量离子共振相互作用的数值模拟工作。因此,本综述论文主要从以下三个方面展开:1)回顾撕裂模与高能量离子相互作用的研究历史;2)基于HL-2A实验,从数值模拟的角度讨论撕裂模与高能量离子共振相互作用的物理机理以及其导致高能量离子损失的物理机制;3)展望未来聚变堆中撕裂模与高能量离子相互作用的情况。 相似文献
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The ionization process of B2+ by H+ impact is studied using the continuum-distorted-wave eikonal-initial-state (CDW-EIS) method and the modified free electron peak approximation (M-FEPA), respectively. Total, single-, and double- differential cross sections from 1s and 2s orbitals are presented for the energy range from 10 keV/u to 10 MeV/u. Comparison between the results from the two methods demonstrates that the total and single-differential cross sections for the high-energy incident projectile case can be well evaluated using the simple M-FEPA model. Moreover, the M-FEPA model reproduces the essential features of the binary-encounter (BE) bump in the double-differential cross sections. Thus, the BE ionization mechanism is discussed in detail by adopting the M-FEPA model. In particular, the double- and single-differential cross sections from the 2s orbital show a high-energy hip, which is different from those from the 1s orbital. Based on Ref. [1], the Compton profiles of B2+ for 1s and 2s orbitals are given, and the hips in DDCS and SDCS from the 2s orbital are explained. 相似文献
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Novel correction method for X-ray beam energy fluctuation of high energy DR system with a linear detector 总被引:1,自引:0,他引:1
A high energy digital radiography (DR) testing system has generated diverse scientific and technological interest in the field of industrial non-destructive testing. However, due to the limitations of manufacturing technology for accelerators, an energy fluctuation of the X-ray beam exists and leads to bright and dark streak artifacts in the DR image. Here we report the utilization of a new software-based method to correct the fluctuation artifacts. The correction method is performed using a high pass filtering operation to extract the high frequency information that reflects the X-ray beam energy fluctuation, and then subtracting it from the original image. Our experimental results show that this method is able to rule out the artifacts effectively and is readily implemented on a practical scanning system. 相似文献
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The "International Workshop on e+e- collisions from phi to psi" (PHIPSI09), was held at Institute of High Energy Physics (IHEP), Chinese Academy of Sciences (CAS), Beijing, China, from Tuesday, October 13 to Friday, October 16 2009. This is the seventh workshop in a series, which started in Karlsruhe in 1996 and continued in Novosibirsk (1999), SLAC (2001), Pisa (2003), Novosibirsk (2006), and Frascati (2008), 相似文献
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在原子、分子和纳米材料中的高次谐波为非线性光学开辟了一个崭新的研究领域.其响应时间之短、能量之高,引起了人们的高度重视.目前的研究达到了白热化的程度.还有很多问题没有解决.文章首先简要地介绍了这一个新的领域.然后用一个简单的例子引出有名的辐射截断方程,最后用C60作为一个例子说明如何详细地计算辐射能量谱. 相似文献
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