Discrete dipole approximation for low-energy photoelectron emission from NaCl nanoparticles

被引:20
|
作者
Berg, Matthew J. [1 ]
Wilson, Kevin R. [2 ]
Sorensen, Christopher M. [3 ]
Chakrabarti, Amit [3 ]
Ahmed, Musahid [2 ]
机构
[1] Mississippi State Univ, Dept Phys & Astron, Mississippi State, MS 39762 USA
[2] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Div Chem Sci, Berkeley, CA 94720 USA
[3] Kansas State Univ, Dept Phys, Manhattan, KS 66506 USA
基金
美国国家科学基金会;
关键词
Electromagnetic scattering; Internal field; Photoemission; Nanoparticle; Nonspherical particle; Discrete dipole approximation; PHOTOEMISSION; VACUUM;
D O I
10.1016/j.jqsrt.2011.10.007
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
This work presents a model for the photoemission of electrons from sodium chloride nanoparticles 50-500 nm in size, illuminated by vacuum ultraviolet light with energy ranging from 9.4 to 10.9 eV. The discrete dipole approximation is used to calculate the electromagnetic field inside the particles, from which the two-dimensional angular distribution of emitted electrons is simulated. The emission is found to favor the particle's geometrically illuminated side, and this asymmetry is compared to previous measurements performed at the Lawrence Berkeley National Laboratory. By modeling the nanoparticles as spheres, the Berkeley group is able to semi-quantitatively account for the observed asymmetry. Here however, the particles are modeled as cubes, which are closer to their actual shape, and the interaction of an emitted electron with the particle surface is also considered. The end result shows that the modeled emission asymmetry for these low-energy electrons is more sensitive to the interaction with the particle-surface than to the specific particle shape, i.e., a sphere or cube. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:259 / 265
页数:7
相关论文
共 50 条
  • [21] Low-energy photoelectron transmission through aerosol overlayers
    Amanatidis, Stavros
    Yoder, Bruce L.
    Signorell, Ruth
    JOURNAL OF CHEMICAL PHYSICS, 2017, 146 (22):
  • [22] LOW-ENERGY NEUTRAL ATOM EMISSION FROM THE EARTHS MAGNETOSPHERE
    MOORE, KR
    SCIME, EE
    FUNSTEN, HO
    MCCOMAS, DJ
    THOMSEN, MF
    OPTICAL ENGINEERING, 1994, 33 (02) : 342 - 348
  • [23] LOW-ENERGY SECONDARY-EMISSION FROM NIO(100)
    MAGLIETTA, M
    ROVIDA, G
    SOLID STATE COMMUNICATIONS, 1977, 21 (06) : 571 - 573
  • [24] LOW-ENERGY ELECTRON-IMPACT EMISSION FROM GASES
    HIROTA, K
    HATADA, M
    OGAWA, T
    INTERNATIONAL JOURNAL FOR RADIATION PHYSICS AND CHEMISTRY, 1976, 8 (1-2): : 205 - 219
  • [25] EMISSION OF LOW-ENERGY PARTICLES FROM HIGHLY EXCITED NUCLEI
    TAKIBAEV, ZS
    MOROZOVA, PV
    SPITSYNA, SA
    BORISENKO, AI
    SOVIET JOURNAL OF NUCLEAR PHYSICS-USSR, 1980, 31 (06): : 740 - 743
  • [26] Low-energy approximation in the theory of adsorption on graphene
    Davydov, S. Yu.
    Posrednik, O. V.
    PHYSICS OF THE SOLID STATE, 2015, 57 (08) : 1695 - 1698
  • [27] APPROXIMATION METHODS FOR LOW-ENERGY POTENTIAL SCATTERING
    GARIBOTTI, CR
    MIGNACO, JA
    NUCLEAR PHYSICS A, 1975, 244 (03) : 449 - 461
  • [28] Analysis of a low-energy correction to the eikonal approximation
    Fukui, Tokuro
    Ogata, Kazuyuki
    Capel, Pierre
    PHYSICAL REVIEW C, 2014, 90 (03):
  • [29] Low-energy approximation in the theory of adsorption on graphene
    S. Yu. Davydov
    O. V. Posrednik
    Physics of the Solid State, 2015, 57 : 1695 - 1698
  • [30] TEST OF LOW-ENERGY LIMIT OF BORN APPROXIMATION
    SILVERMAN, SM
    LASSETTRE, EN
    JOURNAL OF CHEMICAL PHYSICS, 1966, 44 (05): : 2219 - +