1 documents found
Information × Registration Number 0212U004959, 0109U001655 , R & D reports Title Influence of regular domain and surface structures on the characteristics of formation of spatial distributions of the scattered particles and the magnetization of the thin films popup.stage_title Head Bespalova Svetlana, Registration Date 09-02-2012 Organization Donetsk National University popup.description2 Influence of grazing angle on the extreme deflections in polar plane, positions of boundaries and interval width of entrance blocking of electrons scattered by a film with an SDS have been studied. The behavior of the dependence of positions of left and right boundaries of blocking interval on initial energy of particles has been determined. An analytical model of entrance blocking of charge particles by a film with SDS by a principle of magnetic mirror has been developed. A vacuum installation for studies of low-angle scattering of electrons by DS fields has been built and the basic experiments on the effect of YIG films with SDS on electron beams have been performed. The modes of laser irradiation usable for forming the structures of longitudinal nonuniformities on a surface of a polycrystalline HTSC with preservation of superconductive properties, without additional oxygen saturation, have been determined. Influence of constant magnetic field on the angular dependences of diamagnetic response of thick HTSC films with such surface structures has been studied. The threshold value of irradiation power, above which the field of magnetic flux penetration into sample increases considerably has been determined. Product Description popup.authors Афанасьєв Денис Миколайович Васильєв Олександр Васильович Васько Олена Ігорівна Тарасова Ольга Олегівна Фінохін Віктор Іванович Чернякова Ольга Володимирівна Штонда Олексій Сергійович popup.nrat_date 2020-04-02 Close
R & D report
Head: Bespalova Svetlana. Influence of regular domain and surface structures on the characteristics of formation of spatial distributions of the scattered particles and the magnetization of the thin films. (popup.stage: ). Donetsk National University. № 0212U004959
1 documents found

Updated: 2026-03-25