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 共查询到19条相似文献,搜索用时 250 毫秒
1.
 研究了强X射线在金属表面产生的Compton电流时空分布,利用Compton散射公式计算了出射电子动量和微分散射截面随电子出射角的变化关系,发现在光子能量为1 MeV、入射光强为1021 W·m-2的条件下,沿入射光方向形成的Compton电流密度达到107 A·m-2量级。采用1维电动力学模型计算了斜入射的X射线在金属表面产生的Compton电流密度引起的电磁脉冲,结果表明:X射线在单位长度金属辐射产生的磁场强度达到106 A·m-1量级,脉冲宽度为ps量级;电磁脉冲沿X射线反射方向传播,具有良好的定向性。  相似文献   

2.
高电荷态离子Ar17+与Mo表面作用过程中的X射线发射   总被引:1,自引:0,他引:1  
观测了低速(小于Bohr速度)高电荷Ar17+离子与金属Mo表面相互作用的X射线发射,以及ArKα,KβX射线强度随入射离子动能的变化.  相似文献   

3.
探测了动能为1.0——7.0 MeV的129Xe30+ 入射Au表面产生的X射线谱. 实验结果表明, 入射离子动能较高时, 不仅激发出很强的Au的M-X射线, 还激发出了Xe的L-X射线, 且X射线产额与入射离子动能有强相关性. 分析了X射线产额与入射离子动能的关系.  相似文献   

4.
将超导离子源提供的10—20keV/q Ar16+和Ar17+离子入射到Zr金属表面,在相互作用中产生的X射线谱表明,高电荷态Ar16+离子在金属表面中性化过程中有可能存在多电子激发,使Ar16+的K壳层电子被激发形成空穴,在退激过程中发射特征Kα-X射线.空心原子Ar的K层发射X射线强度随入射离子的动能而减弱,靶原子Zr的L壳层发射X射线强度随入射离子动能的增加而增强.Ar17+的单离子的Kα-  相似文献   

5.
研制一种双层结构的GEM气体探测器用于X射线成像和带电粒子径迹测量.使用铜靶X射线管产生的高能量X射线对其气体放大倍数,电荷传输效率,增益稳定性进行测试.实验结果显示:在入射X射线通量为105Hz/mm2时,双层GEM探测器的有效增益达到104以上,并且具有长时间稳定性.  相似文献   

6.
以"阳"加速器(1 MA,80 ns)驱动的Z箍缩等离子体为X射线源研究X射线加载下金属表面出现的电荷分离现象,Z箍缩负载为16根直径5μm的钨丝组成的丝阵,丝阵半径3 mm。强度107W/cm2、半高宽30 ns的软X射线脉冲通过直径5 mm的限光孔辐照半径30 mm、厚3 mm的铜盘中心,在金属表面产生了脉宽相近,幅值kV的电势。测量了该电势沿金属表面的分布,观测到微弱的调制现象。电势的极性表明电子主要沿金属表面运动而不是垂直表面运动,这表明热电效应是造成电荷分离的主要机制。入射X射线强度较弱时,电子的个体行为——光电效应、康普顿效应占主导;当入射强度较大时,弱关联的集体行为——热效应占主导;进一步增大入射X射线强度将出现强关联的集体行为——电荷密度调制状态。  相似文献   

7.
在兰州重离子加速器国家实验室 用动能150 keV和1.2 MeV的Arq+束流分别入射Au表面, 测量了离子与表面相互作用过程中辐射的X射线谱. 结果表明, 多电荷态Arq+激发Au原子的Mα-X射线至少需要2 keV的势能. 本文采用半经典两体碰撞近似, 估算了炮弹离子通过碰撞激发靶原子辐射X射线的动能阈值.  相似文献   

8.
 利用高温熔融法制备了不同浓度的Tb3+掺杂硅酸盐玻璃,并分别测量了紫外和X射线激发时的发射光谱。光谱结果表明,不同浓度Tb3+掺杂硅酸盐玻璃在紫外和X射线激发时发光行为具有相似的浓度依赖关系:低浓度Tb4O7掺杂时主要以蓝光(5D37FJ)发射为主,而高浓度掺杂时以绿光(5D47FJ)发射为主。Tb3+发光强度与掺杂浓度的关系分析表明,5D3的浓度猝灭是电偶极-电偶极相互作用引起的, 而5D4的浓度猝灭是交换相互作用引起的。  相似文献   

9.
讨论了北京同步辐射装置的4W1C光束线和X射线漫散射实验站的技术特点.利用在漫散射实验站上获得的能量分辨率为4.4×10-4、光斑大小为0.5mm(水平)×0.3mm(垂直)的聚焦单色X射线光束,研究了准周期非晶多层膜的X射线漫散射──非镜面散射.实验结果表明,准周期多层膜的漫散射强度分布在倒空间中与表面平行的条纹上并形成散射强度的调制.对散射强度调制进行的模拟计算得到相当满意的结果.  相似文献   

10.
在兰州重离子加速器国家实验室分别测量了H+, He2+, Ar11+和Xe20+离子轰击Ta表面过程中辐射的X射线谱, 并得到了Ta特征X射线谱中Mγ (M3N5)和Nαβ (M4,5N6,7)线的强度, 即Iγ和Iαβ. 分析结果表明, 强度比值Iγ/Iαβ 随着入射离子原子序数的增加而显著增加, 这是由于碰撞过程中Ta原子的多电离效应使M3支壳层的荧光产额ω3产生了显著增强.  相似文献   

11.
当一定频率的光照到特定的金属表面时,金属会产生光电子并产生光电流,其光电流的大小与光强成正比,而光强与发射光的光强和光在传播过程中的煤质有关。当射光强一定时,其光电流大小与媒质有关。当光线穿过一定浓度尘土的空气时,其光电流大小与媒质浓度成反比,根据这一原理,我们可以通过测量光电流的大小来测量尘土的浓度。  相似文献   

12.
Bursts of emissions of low‐energy electrons, including interatomic Coulomb decay electrons and Auger electrons (0–1000 eV), as well as X‐ray fluorescence produced by irradiation of large‐Z element nanoparticles by either X‐ray photons or high‐energy ion beams, is referred to as the nanoradiator effect. In therapeutic applications, this effect can damage pathological tissues that selectively take up the nanoparticles. Herein, a new nanoradiator dosimetry method is presented that uses probes for reactive oxygen species (ROS) incorporated into three‐dimensional gels, on which macrophages containing iron oxide nanoparticles (IONs) are attached. This method, together with site‐specific irradiation of the intracellular nanoparticles from a microbeam of polychromatic synchrotron X‐rays (5–14 keV), measures the range and distribution of OH radicals produced by X‐ray emission or superoxide anions () produced by low‐energy electrons. The measurements are based on confocal laser scanning of the fluorescence of the hydroxyl radical probe 2‐[6‐(4′‐amino)phenoxy‐3H‐xanthen‐3‐on‐9‐yl] benzoic acid (APF) or the superoxide probe hydroethidine‐dihydroethidium (DHE) that was oxidized by each ROS, enabling tracking of the radiation dose emitted by the nanoradiator. In the range 70 µm below the irradiated cell, radicals derived mostly from either incident X‐ray or X‐ray fluorescence of ION nanoradiators are distributed along the line of depth direction in ROS gel. In contrast, derived from secondary electron or low‐energy electron emission by ION nanoradiators are scattered over the ROS gel. ROS fluorescence due to the ION nanoradiators was observed continuously to a depth of 1.5 mm for both oxidized APF and oxidized DHE with relatively large intensity compared with the fluorescence caused by the ROS produced solely by incident primary X‐rays, which was limited to a depth of 600 µm, suggesting dose enhancement as well as more penetration by nanoradiators. In conclusion, the combined use of a synchrotron X‐ray microbeam‐irradiated three‐dimensional ROS gel and confocal laser scanning fluorescence microscopy provides a simple dosimetry method for track analysis of X‐ray photoelectric nanoradiator radiation, suggesting extensive cellular damage with dose‐enhancement beyond a single cell containing IONs.  相似文献   

13.
吴海娜  孙雪  公卫江  易光宇 《物理学报》2015,64(7):77301-077301
量子点体系是一种典型的低维体系, 该体系的独特物理特性有利于提高热电转换效率. 本文采用非平衡态格林函数方法, 选择平行双量子点结构, 详细讨论了电子-声子相互作用对该体系的电导、热电功率、热电优值以及热导等热电效应相关参数的影响, 全面描述了电子-声子相互作用对该结构中热电效应的影响. 理论计算结果表明, 在低温情况下, 该体系中的法诺干涉能够有效增强热电效应, 而电子-声子相互作用通过破坏法诺干涉而在一定程度上抑制电导以及热导过程. 然而, 电子-声子相互作用不会显著地影响热电功率的幅值, 并且热电优值的极值几乎不会改变, 因此在低温条件下电子-声子相互作用并不是破坏量子点体系热电效应的必要条件. 本文的结果将有利于澄清电子-声子相互作用对量子点体系热电效应的影响.  相似文献   

14.
Xingshan Jiang  Shuangmu Zhuo 《Optik》2010,121(13):1219-1225
The dynamic alignment and post-ionization alignment of nitrogen molecules are investigated while considering the effect of tunneling ionization. The effects of tunneling ionization on the angular distribution are calculated when the molecules are irradiated by different laser intensities. The results show that laser intensity directly affects the time and extent of dynamic alignment. Furthermore, the extent of post-ionization alignment is not only determined by laser intensity but also affected by the final extent of dynamic alignment. The post-ionization alignment will dominate during the process of molecular (or molecular ion) rotational alignment for femtosecond laser pulse. The time of tunneling ionization is a significant factor to the final ensemble angular distribution of molecular ions when laser intensity is low.  相似文献   

15.
Functionalization of photoelectric effect in nanostructures is presenting a promising strategy for humans to achieve precise detection and efficient transformation. Due to the high applied value, numerous materials and constructions are adopted for photoelectric effect to deliver on its potential performance. Among these functional materials, metal‐semiconductor (MS) or metal‐oxide‐semiconductor (MOS) systems own unparalleled advantage including reliable stability, superb physical performance, and simple fabrication process. Herein, two types of photoelectric effect, lateral photovoltaic and photo‐induced resistance effect, in nanostructure MS or MOS systems are reviewed. These effects have great potential in applications and will play a beneficial role in future investigations. In addition, how each component of the system contributes to the photoelectric properties and responds to external fields are detailed, suggesting future study directions in photoelectric fields.  相似文献   

16.
夏志林 《物理学报》2011,60(5):56804-056804
采用蒙特卡罗方法模拟了1064 nm,GW/cm2级脉冲激光辐照下,纳米尺度材料中电子迁移及加速过程.电子在激光场中迁移的过程涉及晶格散射、表面散射以及碰撞电离等作用.结果表明:材料的尺度小到一定程度后,表面散射作用主导电子散射过程,小尺寸限制效应表现明显,电子很难有效地吸收激光能量.研究结果对分析具有纳米尺度微结构材料的激光损伤行为提供了依据.同时,根据该小尺寸限制效应可以设计出具有新型纳米微结构的高激光损伤阈值薄膜. 关键词: 激光辐照 小尺度效应 电子加速 蒙特卡罗模拟  相似文献   

17.
辐照诱导的人正常肝细胞系HL-7702细胞延迟效应   总被引:1,自引:0,他引:1  
利用X射线辐照人正常肝细胞系HL-7702细胞, 运用胞质分离阻滞微核法实验检测细胞微核率,AnnexinV FITC细胞凋亡检测试剂盒检测细胞凋亡率, 细胞微核率和凋亡率随着辐照剂量的增加而显著增加。X射线照射后细胞传代培养, 第7代时不同剂量辐照后子代细胞微核率和凋亡率同未辐照细胞相比已无明显区别。 对不同剂量辐照后传代7代的细胞再次照射2.5 Gy的相同剂量,发现它们细胞微核率和凋亡率存在明显差异,即初次受辐照剂量高的细胞, 再次以相同剂量辐照后的微核率和凋亡率也高. 这些结果表明,X射线辐照导致了HL-7702细胞基因组不稳定性这一辐射延迟效应,再次辐照使得辐射的延迟效应得以明显的表现。 Human normal liver cell line HL-7702 cells were irradiated with different doses of X rays. Micronucleus and apoptosis rates in the irradiated cells were measured with cytokinesis block micronucleus method and Annexin V FITC apoptosis detection kit, respectively. Experimental data showed that the micronucleus and apoptosis rates increased obviously with increasing irradiation dose. After seven population doublings, the micronucleus and apoptosis rates of the cells surviving exposure to the X rays reduced to the same levels as non irradiated control cells; the progenies of the cells were secondly exposed to X rays at the same dose of 2.5 Gy. We found that the progenies of the cells surviving the first irradiations of the various doses showed markedly differential micronucleus frequencies and apoptotic rates. Although the same dose of 2.5 Gy was applied in the second irradiations, the micronucleus frequencies and apoptotic rates of the progenies of the cells initially exposed at higher doses were significantly higher than the others. These results indicate that X rays lead to genomic instability in HL 7702 cells, which is an important manifestation of radiation induced delayed effect, and a second radiation stimulus makes the delayed effect in the progeny of the previously irradiated cells be expressed obviously.  相似文献   

18.
对1:55 μm波长DFB 结构的InGaAsP 多量子阱激光二极管开展电子和60Co- 射线辐照试验。试验结果表明,激光二极管的斜度效率主要受带电粒子沉积的电离总剂量影响,而阈值电流和光功率主要受位移损伤剂量的影响。利用位移损伤剂量方法评价激光二极管的辐射损伤特征,并且预测其在空间辐射环境中的光功率衰退情况。模拟计算结果表明,MEO轨道辐射环境对激光二极管光功率辐射损伤远大于GEO轨道的影响,这主要是由于MEO轨道辐射环境的高能电子通量密度远大于GEO轨道的通量密度。The 1.55 μm InGaAsP multi-quantum-well laser diodes with distributed feedback structures were irradiated by electrons and 60Co- rays. The experimental results show the slope efficiency of laser diode is mostly affected by the total ionizing dose produced by charging particles, and the threshold current and the optical power mainly by displacement damage dose. The displacement damage dose methodology was employed to evaluate radiation damage of the laser diodes, and to predict the power degradations of these diodes in space. The calculated results indicate that the optical powers of the diodes will have more serious degradation for medium Earth orbit than for geosynchronous Earth orbit,due to higher fluence density of high energy electrons in GEO orbits.  相似文献   

19.
Solid state/EPR (SS/EPR) dosimeters of carbon ions irradiated sucrose are studied with EPR, and their water solutions – with UV spectroscopy. Doses between 20 and 200 Gy are used with linear energy transfer (LET) values for carbon ions of 63, 77, 96 and 230 keV μm?1. After irradiation all samples show typical for irradiated sucrose EPR and UV spectra. The obtained data are compared with those previously reported for nitrogen particles and gamma rays irradiated sucrose. The identical shape of both the EPR and UV spectra of irradiated with various type radiation samples suggests that generated free radicals are not influenced by the nature of radiation. The lack of difference in the line width of the separate lines or the whole EPR spectrum, obtained for gamma and heavy particles irradiation, suggests negligible spin–spin interaction among the radiation-generated free radicals in the samples. The linear dependence of the EPR response on the absorbed dose radiation is found to be higher when generated by gamma rays, than by the same absorbed dose of heavy particles. In addition, the EPR response for carbon ions is higher than that for nitrogen ions. Water solutions of irradiated sucrose exhibit UV spectrum with absorption maximum at 267 nm, attributed to the recombination products of free radicals. The UV band intensity depends on the absorbed dose radiation. The UV spectra obtained for carbon, nitrogen and gamma rays irradiated sucrose are also compared.  相似文献   

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