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1.
基于Dirac-Slater自洽场方法,计算了Bi79+离子从低能到高能的光电离截面以及其逆过程Bi80+的辐射复合截面; 分析了Kramers公式的适用性;考察了多极效应、相对论效应在不同能区对辐射复合截面的影响;计算了Bi80+离子在电离阈值附近的辐射复合截面和辐射复合速率系数,考察了自由电子分布函数及电子的温度变化对速率系数的影响,并将计算结果同高精度的储存环合并束实验进行了对比.  相似文献   

2.
基于Dirac-Slater自洽场方法,计算了Bi79+离子从低能到高能的光电离截面以及其逆过程Bi80+的辐射复合截面; 分析了Kramers公式的适用性;考察了多极效应 、相对论效应在不同能区对辐射复合截面的影响;计算了Bi80+离子在电离阈值附近 的辐射 复合截面和辐射复合速率系数,考察了自由电子分布函数及电子的温度变化对速率系数的影 响,并将计算结果同高精度的储存环合并束实验进行了对比. 关键词: 多极计算 辐射复合 光电离  相似文献   

3.
基于多组态Dirac-Fock理论方法,利用GRASP92和RATIP以及在此基础上最新发展的RERR06程序,对类氢U91+(1s)离子的辐射复合截面以及辐射退激发过程进行了详细的理论研究.系统地计算了具有确定能量的连续电子被处于基态的类氢U91+(1s)离子俘获到nl (1≤n≤8, 0≤l≤6)轨道形成类氦U90+(1snl)离子的辐射复合截面,并研究了这辐射复合末态退激发谱的相对强度.研究发现,类氢U91+(1s)离子辐射复合到不同轨道的截面随其主量子数的增大而显著减小;同时,辐射复合末态的退激发对Kα谱线的相对强度有重要影响. 关键词: 辐射复合 多组态Dirac-Fock理论方法 辐射退激发  相似文献   

4.
Bi80+辐射复合过程的多极计算   总被引:1,自引:1,他引:0  
基于Dirac-Slater自洽场方法,文中计算了Bi79+离子从低能到高能的光电离截面; 研究了半经典类氢近似Kramer公式的适用性;考察了多极效应、相对论效应在不同能区对光电离截面的影响;计算了Bi80+离子在电离阈值附近的辐射复合截面和辐射复合速率系数,并将计算结果同高精度的储存环合并束实验结果进行了对比.  相似文献   

5.
在双电子复合过程发生的能量范围内,发射X光子的原子过程除双电子复合过程外还有辐射复合、共振激发、共振复合以及直接激发原子过程. 本文使用相对论组态相互作用方法计算了这些过程的截面,比较了在双电子复合过程发生的能量范围内这些原子过程的截面与双电子复合过程截面,探讨了这些过程对双电子复合过程的影响. 研究结果表明,辐射复合截面随入射电子束能量的增大迅速减小,在双电子复合能量范围内几乎为一常数,可以作为本底来处理;共振激发和共振复合过程对双电子复合过程的影响可以忽略不计;当入射电子束能量高于靶离子的第一激发能时,电子碰撞直接激发截面与高Rydberg态的截面连成一片,随着入射电子束能量的增加,电子碰撞直接激发截面越来越大,这时必须考虑直接激发过程. 使用相对论组态相互作用方法计算了类氖氙离子的双电子复合截面,其结果与已有的部分实验和理论结果很吻合.  相似文献   

6.
在双电子复合过程发生的能量范围内,发射X光子的原子过程除双电子复合过程外还有辐射复合、共振激发、共振复合以及直接激发原子过程.本文使用相对论组态相互作用方法计算了这些过程的截面,比较了在双电子复合过程发生的能量范围内这些原子过程的截面与双电子复合过程截面,探讨了这些过程对双电子复合过程的影响.研究结果表明,辐射复合截面随入射电子束能量的增大迅速减小,在双电子复合能量范围内几乎为一常数,可以作为本底来处理;共振激发和共振复合过程对双电子复合过程的影响可以忽略不计;当入射电子束能量高于靶离子的第一激发能时,电子碰撞直接激发截面与高Rydberg态的截面连成一片,随着入射电子束能量的增加,电子碰撞直接激发截面越来越大,这时必须考虑直接激发过程.使用相对论组态相互作用方法计算了类氖氙离子的双电子复合截面,其结果与已有的部分实验和理论结果很吻合.  相似文献   

7.
采用非相对论量子计算方法计算了电子与高电荷态离子碰撞的辐射复合截面, 其中连续态电子的波函数是由扭曲波近似方法(DWBE)获得. 计算了低能电子与中、低核电荷的高电荷态离子(类H和类Li)的辐射复合截面, 并与采用有效电荷的库仑波计算结果进行了比较, 说明了扭曲波计算的重要性.  相似文献   

8.
基于Dirac—Slater自洽场方法,中计算了Bi^79 离子从低能到高能的光电离截面;研究了半经典类氢近似Kramer公式的适用性;考察了多极效应、相对论效应在不同能区对光电离截面的影响;计算了Bi^80 离子在电离闲值附近的辐射复合截面和辐射复合速率系数,并将计算结果同高精度的储存环合并束实验结果进行了对比。  相似文献   

9.
类氦离子的KLL双电子复合过程的相对论理论研究   总被引:3,自引:0,他引:3       下载免费PDF全文
在相对论多组态Dirac-Fock理论基础上,发展了计算双电子复合截面的程序.并以类锂C3+,Ar15+,Kr33+和U89+等离子为例,详细计算了共振双激发态1s2l2l′的辐射衰变率、Auger衰变率及相应的双电子复合截面.对于C4+,Arl6+和Kr34+离子的结果与已有的计算和实验结果都能很好地符合;对于U90+离子,则重点 关键词: 双电子复合 截面 MCDF  相似文献   

10.
本文采用相对论的Flexible Atomic Code (FAC) 程序计算类氦Kr34+离子双电子复合的截面及速率系数,其中用n-3标度律对速率系数作了外推.文中我们还讨论了辐射分支比随不同共振峰的变化以及级联辐射的影响.  相似文献   

11.
基于Dirac-Slater相对论平均自洽场理论和类氢模型,研究了自由电子被辐射复合到裸核和类裸核离子的n壳层时RR截面随自由电子能量的变化,以及原子实对这种变化的影响;给出了两种理论模型下RR截面曲线变化的差异,并对这种差异做了较详细的理论说明.  相似文献   

12.
The electromagnetic radiative correction to the cross section of the vector meson electroproduction is calculated. Explicit covariant formulae for the observed cross section are obtained. The dependence of the radiative correction on the experimental resolution and on the inelasticity cut is discussed. The FORTRAN code DIFFRAD, based on both exact (ultrarelativistic) and approximate sets of the formulae for the radiative correction to the cross section, is presented. Detailed numerical analysis for kinematical conditions of the recent experiments on the diffractive electroproduction of vector mesons is given. Received: 23 August 1998 / Published online: 15 April 1999  相似文献   

13.
This numerical study investigates the sensitivity of non-equilibrium shockwave structure to uncertainties in (a) the ground and excited state continuum radiative cross section and (b) the bound-bound radiative cross section in a three level (ground, excited, and free electronic states considered) argon-like gas at Mach 18 and a pressure of 1 cm Hg. Changing the values of the radiative cross sections by an order of magnitude does not significantly influence the relaxation region; however, a large change occurs in not only the magnitude but also the extent of both the electron and excited state precursors. Increasing either the ground state continuum or the bound-bound cross section decreases the number of free electrons in front of the shock wave. These cross sections also influence the extent of the electron precursor through their influence on the ratio of the electrons produced by ground state photoionization to those produced by ground state photoexcitation followed by excited state photoionization. The bound-bound cross section also controls the excited state precursor, because the production of excited states is entirely due to line radiation. Increasing the excited state photoionization cross section increases both the magnitude and extent of the electron precursor, because the cross section influences the ratio of the two processes that compete to produce free electrons, and at the same time it influences the magnitude of the excited state precursor.  相似文献   

14.
The adhesion of Ni–Cu‐plated contacts requires annealing, which can lead to an electrical degradation of the solar cell. A combination of optical imaging methods and electron microscopical cross‐section analysis was used to investigate the annealing‐induced shunts on monocrystalline solar cells. The results show that Ni spikes cause the lowering of the pseudo fill factor and reveal that these nonlinear shunts show the same behavior as recombination active breakdown sites on multicrystalline silicon solar cells, including radiation of visible light while breakdown. Using reverse biased electroluminescence set‐up the shunts could be localized in top view with µm size lateral resolution. Subsequently, a cross‐section was prepared on a radiative breakdown spot. Advanced electron microscopic investigations reveal defect structures featuring nickel precipitates on the position of the light source. (© 2014 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

15.
The lowest order radiative correction to the differential cross section of process of muon pair production with the emission of a hard photon at high energy electron-positron annihilation are calculated. Taking into account the emission of additional soft and hard photon, the cross section can be put in the form of the Drell-Yan process in leading logarithmical approximation. Applying the crossing transformation, we obtain the cross section of the radiative electron-muon high-energy scattering process. Virtual and soft photon emission contributions of the nonleading form are tabulated for several typical kinematical points. The limit of the small invariant mass of a muon pair is in agreement with our previous analysis.  相似文献   

16.
Optics and Spectroscopy - Precise relativistic calculations of the total and differential cross sections of radiative recombination of an electron with hydrogen-, helium-, and lithium-like uranium...  相似文献   

17.
The contribution of exclusive radiative tail to the cross section of semi-inclusive hadron leptoproduction has been calculated exactly for the first time. Although the experience of inclusive data analyses suggests us that the contribution of radiative tail from the elastic peak is of particular importance, similar effects in the semi-inclusive process were only recently estimated in the peaking approximation. The explicit expressions for the lepton part of the lowest order QED contribution of exclusive radiative tail to the five-fold differential cross section are obtained and discussed. Numerical estimates, provided within Jefferson Lab kinematic conditions, demonstrate rather large effects of the exclusive radiative tail in the region at semi-inclusive threshold and for high energy of detected hadron.  相似文献   

18.
We analyze the low-temperature dissociative recombination reaction e ?+O 2 + → O(1 D)+O(3 P) in the field of visible monochromatic laser radiation. The analysis is performed in terms of the multichannel quantum defect theory using the stationary formalism of the radiative collision matrix. We calculate the dependences of the reaction cross section on the incident electron energy, the external electromagnetic field strength and frequency, and also the angle between the directions of the electron beam and the electric vector for linearly polarized radiation. The cross section is shown to increase by several orders of magnitude for a certain choice of these parameters, suggesting the possible laser stimulation of this reaction.  相似文献   

19.
The optical model formula of Lane and Mughabghab for E1 radiative neutron capture has been applied to resonance capture in 56Fe and 90Zr. It is shown that in general the optical model predicts the contributions to the radiative widths which are correlated with the neutron widths, except for a depletion factor representing the proportion of E1 single-particle strength remaining near the neutron threshold. The degree of correlation between measured and calculated radiative widths is related to the ratio of the variances of these widths. This enables an estimate of the factor . It is shown that the theoretical value for the ratio of the radiative to neutron widths is to a good approximation independent of the imaginary part of the optical potential. The calculated radiative width is thus well defined. The results are compared with those from the valence model and from experiment. The direct background contribution is found to be negligible compared to the average compound cross section. The contribution of d-waves to the radiative capture cross section is discussed.  相似文献   

20.
Elastic light scattering by low-dimensional quantum objects without a change in the frequency is theoretically investigated in terms of the quantum perturbation theory. The differential cross section of resonance light scattering from any excitons in any quantum dots is calculated. It is demonstrated that, when the light wavelengths considerably exceed the quantum-dot size, the polarization and angular distribution of the scattered light do not depend on the shape, the size, or the configuration of quantum dots. In this case, the total light scattering cross section is independent of the quantum-dot size. If the radiative damping of an exciton exceeds the nonradiative damping, the total light scattering cross section at resonance is of the order of the light wavelength squared. The radiative damping associated with the long-range exchange interaction between electrons and holes is calculated for any excitons and any quantum dots.  相似文献   

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