Результаты исследований: Научные публикации в периодических изданиях › статья в журнале по материалам конференции › Рецензирование
During the interaction of picosecond laser pulse of intensity 5×1018 W/cm2 with the target we observed a MeV energy proton beam, confined in a cone angle ∼ 30° and directed normal to the target surface. Laser conversion efficiency into fast ions energy (at the front side of the target) was ∼ 1% (and near 5% at the rear). The simulations and optimisation of ion acceleration is discussed here. The laser intensity being ∼ 10M19 W/cm2, nuclear reactions proceed in in the target, particularly resulting in production of the γ-line radiation. In light materials irradiated by the laser beam the γ-photon yield reaches 10-4 number of fast ions. For nuclear excitation we used also X-ray pump from laser plasma to illuminate film mixture of KBr and Rb84. Near 104, 200 Kev decay γ-photons from excited isomer nuclei can be produced per laser shot.
Язык оригинала | английский |
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Страницы (с-по) | 102-112 |
Число страниц | 11 |
Журнал | Proceedings of SPIE - The International Society for Optical Engineering |
Том | 4352 |
DOI | |
Состояние | Опубликовано - 2001 |
Событие | Ultrafast Optics and Superstrong Laser Fields - St. Petersburg, Российская Федерация Продолжительность: 26 июн 2000 → 30 июн 2000 |
ID: 86384898