Theoretical study of elastic electron scattering by zinc atoms in the framework of relativistic optical potential model

被引:1
作者
Kelemen, Vladimir I. [1 ]
Demes, Sandor [2 ]
Remeta, Eugene Yu. [1 ]
机构
[1] Inst Electron Phys, Univ Str 21, UA-88017 Uzhgorod, Ukraine
[2] Inst Nucl Res ATOMK, Bem Sq 18-c, H-4026 Debrecen, Hungary
关键词
Elastic scattering; Optical potential; Shape resonance; Critical minima; Total polarization points; Sherman function; POLARIZATION; APPROXIMATIONS; CADMIUM; MINIMA; SHAPE;
D O I
10.1016/j.elspec.2023.147365
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
A theoretical study of integral and differential cross sections as well as of spin-polarization effects is reported for elastic electron scattering by zinc atoms at collision energies up to 3 keV. It has been shown that a P-wave shape resonance appears in the low-energy range of the integral cross sections. Its energy is about 0.19 and 0.20 eV, while its width is about 0.309 and 0.356 eV for the j = 3/2 and j = 1/2 total angular momentum of the electron, respectively. The differential cross sections of scattering and the Sherman-functions S(E, & theta;) are computed by the parameter-free complex optical potential method. The calculated data are in a good overall agreement with the available experimental and theoretical data in the literature. The energy and angular positions have been located for five critical minima in the differential cross sections. The low-energy minimum is located at [6.63 eV; 102.34 degrees], while the high-energy minimum is at [347.53 eV; 124.11 degrees]. Ten points for the scattered electrons' total spin-polarization (S = & PLUSMN;1) have been found in the vicinity of the critical minima along with the energy and the angular widths of the spin-polarization peaks (where |S| & GE; 0.9).
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页数:14
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