Measurement of the 10B(d,α0)8Be, 10B(d,α1)8Be*, 10B(d,p2)9Be*, 11B(d,α0)9Be, and 11B(d,α2)9Be* reactions cross-sections at the deuteron energies up to 2.2 MeV

IF 1.4 3区 物理与天体物理 Q3 INSTRUMENTS & INSTRUMENTATION
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引用次数: 0

Abstract

The deuteron-boron fusion reaction produces many different charged particles. Data on the reactions cross-sections differ among different authors, so obtaining experimental data is still relevant. Measurements of the reactions cross-section were carried out at the accelerator-based neutron source VITA at Budker Institute of Nuclear Physics (Novosibirsk, Russia) using an α-spectrometer. The 10B(d,α0)8Be, 10B(d,α1)8Be*, 10B(d,p2)9Be*, 11B(d,α0)9Be, and 11B(d,α2)9Be* reactions cross-sections at the deuteron energies up to 2.2 MeV have been measured. The obtained data are presented in tabular form.

测量氘核能量高达 2.2 MeV 时的 10B(d,α0)8Be、10B(d,α1)8Be*、10B(d,p2)9Be*、11B(d,α0)9Be 和 11B(d,α2)9Be* 反应截面
氘硼聚变反应会产生许多不同的带电粒子。不同作者关于反应截面的数据各不相同,因此获取实验数据仍然具有重要意义。我们在布德克核物理研究所(俄罗斯新西伯利亚)的加速器中子源 VITA 上使用 α 光谱仪对反应截面进行了测量。测量了氘核能量高达 2.2 MeV 时的 10B(d,α0)8Be、10B(d,α1)8Be*、10B(d,p2)9Be*、11B(d,α0)9Be 和 11B(d,α2)9Be* 反应截面。获得的数据以表格形式列出。
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来源期刊
CiteScore
2.80
自引率
7.70%
发文量
231
审稿时长
1.9 months
期刊介绍: Section B of Nuclear Instruments and Methods in Physics Research covers all aspects of the interaction of energetic beams with atoms, molecules and aggregate forms of matter. This includes ion beam analysis and ion beam modification of materials as well as basic data of importance for these studies. Topics of general interest include: atomic collisions in solids, particle channelling, all aspects of collision cascades, the modification of materials by energetic beams, ion implantation, irradiation - induced changes in materials, the physics and chemistry of beam interactions and the analysis of materials by all forms of energetic radiation. Modification by ion, laser and electron beams for the study of electronic materials, metals, ceramics, insulators, polymers and other important and new materials systems are included. Related studies, such as the application of ion beam analysis to biological, archaeological and geological samples as well as applications to solve problems in planetary science are also welcome. Energetic beams of interest include atomic and molecular ions, neutrons, positrons and muons, plasmas directed at surfaces, electron and photon beams, including laser treated surfaces and studies of solids by photon radiation from rotating anodes, synchrotrons, etc. In addition, the interaction between various forms of radiation and radiation-induced deposition processes are relevant.
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