Generation of Hard Bremsstrahlung at the Grazing Incidence of 18-MeV Electrons of a Betatron Beam on the Surface of Тa Foil 13 µm Thick / M. M. Rychkov, V. V. Kaplin, S. I. Kuznetsov [et al.]

Уровень набора: Journal of Surface Investigation. X-ray, Synchrotron and Neutron TechniquesАльтернативный автор-лицо: Rychkov, M. M., physicist, Head of the laboratory of Tomsk Polytechnic University, Candidate of technical sciences, 1977-, Maksim Mikhailovich;Kaplin, V. V., physicist, senior research fellow at Tomsk Polytechnic University, 1947-, Valery Viktorovich;Kuznetsov, S. I., physicist, associate professor of Tomsk polytechnic university, candidate of technical sciences (PhD), 1952-, Sergey Ivanovich;Smolyanskiy, V. A., Specialist in the field of instrument engineering, Engineer of Tomsk Polytechnic University, 1991-, Vladimir Aleksandrovich;Vaskovsky, I. K., specialist in the field of accelerating equipment, Leading engineer of Tomsk Polytechnic University, 1941-, Ivan KirillovichКоллективный автор (вторичный): Национальный исследовательский Томский политехнический университет, Инженерная школа неразрушающего контроля и безопасности, Центр промышленной томографии, Научно-производственная лаборатория "Бетатронная томография крупногабаритных объектов";Национальный исследовательский Томский политехнический университет, Школа базовой инженерной подготовки, Отделение естественных наукЯзык: английский.Резюме или реферат: The properties of the hard bremsstrahlung generated at the grazing incidence of 18-MeV electrons on the surface of a thin tantalum foil 13 ?m thick and 2.5 mm long are studied using a facility based on the B?18 betatron. The foil is placed in a goniometer inside the betatron chamber to obtain the orientation dependence of the generated radiation. A strong dependence of the angular distributions of hard bremsstrahlung on the orientation of a thin target is revealed, which is not observed at the normal incidence of electrons on its surface. Using the generated radiation, magnified images of the Duplex IQI reference and an object, consisting of thin layers of different materials, are obtained. The contribution of the absorption and edge phase contrasts to the formation of images of the wire structures of the reference and the planar interfaces in the complex object is studied. High-quality images of the objects are shown to be obtained due to the small horizontal size of the radiation source, which amounts to 13 ?m for radiation emitted along the target and increases with growth in the angle of radiation emission..Примечания о наличии в документе библиографии/указателя: [References: 12 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | betatron | relativistic electrons | thin target | grazing-incidence electron-surface interaction | radiation generation | angular distributions | orientation dependences | бетатроны | релятивистские электроны | мишени | излучения | угловые распределения | ориентационная зависимость Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 12 tit.]

The properties of the hard bremsstrahlung generated at the grazing incidence of 18-MeV electrons on the surface of a thin tantalum foil 13 ?m thick and 2.5 mm long are studied using a facility based on the B?18 betatron. The foil is placed in a goniometer inside the betatron chamber to obtain the orientation dependence of the generated radiation. A strong dependence of the angular distributions of hard bremsstrahlung on the orientation of a thin target is revealed, which is not observed at the normal incidence of electrons on its surface. Using the generated radiation, magnified images of the Duplex IQI reference and an object, consisting of thin layers of different materials, are obtained. The contribution of the absorption and edge phase contrasts to the formation of images of the wire structures of the reference and the planar interfaces in the complex object is studied. High-quality images of the objects are shown to be obtained due to the small horizontal size of the radiation source, which amounts to 13 ?m for radiation emitted along the target and increases with growth in the angle of radiation emission.

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