Retarded field calculation of electron energy loss in inhomogeneous dielectrics
Расчёт запаздывающего поля при потере энергии электронами в неоднородных диэлектриках
2002-03-08
SCID: 54.1/3mb8dyby
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Cherenkov losseselectron energy loss spectroscopyinhomogeneous dielectricsretarded electromagnetic fieldssurface-integral equations
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Abstract (AI)
The exact solution of Maxwell's equations in the presence of arbitrarily shaped dielectrics is expressed in terms of surface-integral equations evaluated at the interfaces. The electromagnetic field induced by the passage of an external electron is then calculated in terms of self-consistently obtained boundary charges and currents. This procedure is shown to be suitable for the simulation of electron energy loss spectra when the materials under consideration are described by local frequency-dependent response functions. The particular cases of translationally invariant interfaces and axially symmetric interfaces are discussed in detail. The versatility of this method is emphasized by examples of energy loss spectra for electrons passing near metallic and dielectric wedges, coupled cylinders, spheres, and tori, and other complex geometries, where retardation aspects and Cherenkov losses can sometimes be significant.
Key Findings
1
Electron-induced electromagnetic fields are computed self-consistently from boundary charges and currents generated by the passing electron.
2
Examples involving wedges, coupled cylinders, spheres, and tori demonstrate versatility, including retardation and potentially significant Cherenkov losses.
3
Maxwell’s equations for arbitrarily shaped dielectrics are solved exactly through surface-integral equations evaluated at material interfaces.
4
Specialized formulations address translationally invariant and axially symmetric interfaces, improving applicability to important geometries.
5
The method enables simulations of electron energy-loss spectra for materials described by local, frequency-dependent response functions.
Research Object
Electron energy loss during passage near arbitrarily shaped inhomogeneous dielectric structures, including metallic and dielectric wedges, coupled cylinders, spheres, and tori
Research Subject
Retarded electromagnetic-field effects, including retardation and Cherenkov losses, in the energy-loss spectra of electrons near interfaces and complex dielectric geometries
Publication Details
Publication Date
2002-03-08
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