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Dipole strength in 139La below the neutron-separation energy

机译:139La中子分离能以下的偶极强度

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The γ-ray strength function is an important input quantity for the determination of the photoreaction rate and the neutron capture rate for astrophysics as well as for nuclear technologies. To test model predictions, the photoabsorption cross section of 139La up to the neutron-separation energy was measured using bremsstrahlung produced at the electron accelerator ELBE of Forschungszentrum Dresden-Rossendorf with an electron beam of 11.5 MeV kinetic energy. The experimental data were analyzed by applying Monte Carlo simulations of γ-ray cascades to obtain the intensities of the ground-state transitions and their branching ratios. We found a significant enhancement of electric dipole strength in the energy range from 6 to 10 MeV that may be related with a pygmy dipole resonance. The present data are combined with photoneutron cross sections for 139La and compared with results of calculations on the basis of a quasiparticle-random-phase approximation using an instantaneous-shape sampling.
机译:γ射线强度函数是确定天体物理学和核技术的光反应速率和中子俘获速率的重要输入量。为了测试模型预测,使用在Forschungszentrum Dresden-Rossendorf的电子加速器ELBE处产生的致辐射,以11.5 MeV动能的电子束测量了直至中子分离能的139La的光吸收截面。通过应用γ射线级联的蒙特卡罗模拟分析实验数据,以获得基态跃迁的强度及其分支比。我们发现电偶极子强度在6到10 MeV的能量范围内显着增强,这可能与侏儒偶极子共振有关。将当前数据与139La的光中子截面相结合,并与基于瞬时形状采样的准粒子-随机相近似的计算结果进行比较。

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