In the neutralization process into an excited state during He+ scattering of magnetic surfaces the orientation off the spin of the captured electron can be extracted by analyzing the degree of circular polarization of the emitted light. In the grazing incidence mode the surface sensitivity is highest owing to the fact that the particles do not penetrate into the target surface, but are scattered well above the uppermost atomic layer. Thus the electrons that neutralize the incoming ion originate from the topmost layer. This implies that the method is very well suited to investigate the properties of magnetic surfaces and multilayers. In this contribution we present new results concerning the surface sensitivity of the above method and experi...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
In the neutralization process into an excited state during He+ scattering of magnetic surfaces the o...
In the neutralization process into an excited state during He+ scattering of magnetic surfaces the o...
When scattering ions off surfaces, some particles are neutralized into excited states that are subse...
When scattering ions off surfaces, some particles are neutralized into excited states that are subse...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Spin-labeling techniques, specifically using electron-spin-polarized 4He+ ions coupled with energy-...
Spin-polarized ion neutralization spectroscopy (SPINS), in which a beam of electron-spin-polarized H...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
In the neutralization process into an excited state during He+ scattering of magnetic surfaces the o...
In the neutralization process into an excited state during He+ scattering of magnetic surfaces the o...
When scattering ions off surfaces, some particles are neutralized into excited states that are subse...
When scattering ions off surfaces, some particles are neutralized into excited states that are subse...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Low-energy ion beams impinging under grazing incidence on surfaces interact inherently with the topm...
Spin-labeling techniques, specifically using electron-spin-polarized 4He+ ions coupled with energy-...
Spin-polarized ion neutralization spectroscopy (SPINS), in which a beam of electron-spin-polarized H...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...
Surface magnetism is studied by means of an ion beam of low energy (2-15 keV) scattered off the surf...