NEW DEVELOPMENTS IN THEORY OF FAST-ELECTRON SCATTERING IN SOLIDS - APPLICATIONS TO MICROBEAM ANALYSIS

被引:37
作者
TILININ, IS
WERNER, WSM
机构
[1] VIENNA UNIV TECHNOL,INST ALLGEMEINE PHYS 134,WIEDNER HAUPSTR 8-10,A-1040 VIENNA,AUSTRIA
[2] MOSCOW ENGN PHYS INST,MOSCOW 115409,RUSSIA
关键词
QUANTITATIVE ELECTRON MICROBEAM ANALYSIS; BOLTZMANN EQUATION; TRANSPORT APPROXIMATION; ELECTRON SCATTERING;
D O I
10.1007/BF01244576
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The study of fast electron interaction with solids in the energy range from 100 eV to several tens of keV is prompted by quickly developing microbeam analysis techniques such as electron probe microanalysis, scanning electron microscopy, electron energy loss spectroscopy and so on. It turned out that for random solids the electron transport problem might be solved on the basis of the generalized radiative field similarity principle. The latter states that the exact differential elastic cross section in the kinetic equation may be replaced by an approximate one provided the conditions of radiative field similarity are fulfilled. Application of the generalized similarity principle to electron scattering in solids has revealed many interesting features of electron transport. Easy to use and effective formulae have been obtained for the angular and energy distribution of electrons leaving a target, total yields of characteristic photons and slow electrons escaping from a sample bombarded by fast primaries, escape probability of Auger electrons as a function of depth etc. The analytical results have been compared with Monte Carlo calculations and experiments in a broad range of electron energies and scattering properties of solids and good agreement has been observed.
引用
收藏
页码:485 / 503
页数:19
相关论文
共 64 条
[1]  
[Anonymous], 2012, DENSITY MATRIX THEOR
[2]   CALCULATIONS OF MEAN FREE PATHS AND STOPPING POWERS OF LOW-ENERGY ELECTRONS (LESS-THAN-OR-EQUAL-TO 10 KEV) IN SOLIDS USING A STATISTICAL-MODEL [J].
ASHLEY, JC ;
TUNG, CJ ;
RITCHIE, RH ;
ANDERSON, VE .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1976, 23 (06) :1833-1837
[3]   KINETIC-THEORY OF REFLECTION ELECTRON-ENERGY LOSS SPECTROSCOPY [J].
BAGRAEV, NT ;
GUSAROV, AI ;
MASHKOV, VA .
SURFACE SCIENCE, 1986, 172 (03) :L545-L550
[4]  
Bethe H, 1930, ANN PHYS-BERLIN, V5, P325
[5]  
Bienlein J. K., 1963, Z PHYS, V174, P91
[6]  
BIRCS LS, 1961, ANAL CHEM, V33, P687
[7]  
BISHOP HE, 1965, 4TH INT C XRAY OPT M, P153
[8]   ANALYTICAL EXPRESSIONS FOR POTENTIALS OF NEUTRAL THOMAS-FERMI-DIRAC ATOMS AND FOR CORRESPONDING ATOMIC SCATTERING FACTORS FOR X RAYS AND ELECTRONS [J].
BONHAM, RA ;
STRAND, TG .
JOURNAL OF CHEMICAL PHYSICS, 1963, 39 (09) :2200-&
[9]  
BOYARSHINOV LM, 1966, ATOM ENERGY, V21, P42
[10]  
Brand JO, 1936, ANN PHYS-BERLIN, V26, P609