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Search for entrance channel effects in the decay of compound nucleus

机译:在复合核衰变中寻找进入通道效应

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The alpha-particle energy spectra have been measured at different laboratory angles from the fusion reaction C-12 + Sc-45 at 83 and 97 MeV incident energies. These spectra are consistent with the predictions of the statistical model calculations using the Rotating Liquid Drop Model (RLDM) values of the moment of inertia and the optical model transmission coefficients for the respective inverse absorption channels. The results of C-12 + Sc-45 asymmetric system were compared with the Si-28 + Al-27 symmetric system at 140 MeV studied earlier as both the systems lead to the formation of nearly same compound nucleus (Z = 27) with the same angular momentum and the excitation energy. The comparison was made in order to understand the symmetric and the asymmetric entrance channel effects in the formation and the decay of the compound system. In the case of Si-28 + Al-27 symmetric system, the experimental spectra deviate at higher as well as at lower energies from the statistical model calculations. Alterations were required in the moment of inertia as well as in the calculation of the transmission coefficients to explain the experimental data. However, in the case of C-12 + Sc-45 asymmetric system there was no need for such changes and the experimental spectra can be well explained by the statistical model calculation using RLDM values of moment of inertia and the optical model transmission coefficients. The dynamical trajectory model calculations are done to explain the experimental data. The comparison of the decay times with the formation times implies that the light charged particles are preferentially emitted prior to the full relaxation of the compound nucleus in the case of Si-28 + Al-27 symmetric system. The results of the present study suggest an entrance channel dependence in the formation and the decay of the compound nucleus. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 36]
机译:从聚变反应C-12 + Sc-45在83和97 MeV的入射能下,在不同的实验室角度测量了α粒子的能谱。这些光谱与使用惯性矩的旋转液滴模型(RLDM)值和相应逆吸收通道的光学模型透射系数的统计模型计算的预测一致。将C-12 + Sc-45不对称系统的结果与140 MeV的Si-28 + Al-27对称系统的结果进行了较早研究,因为这两个系统都导致形成几乎相同的化合物核(Z = 27),相同的角动量和激发能进行比较是为了了解复合系统的形成和衰减中对称和不对称的入口通道效应。在Si-28 + Al-27对称系统的情况下,统计模型计算得出的实验光谱在较高和较低能量下都有偏差。在惯性矩以及传输系数的计算中都需要进行更改,以解释实验数据。但是,在C-12 + Sc-45不对称系统的情况下,不需要进行此类更改,并且通过使用惯性矩的RLDM值和光学模型透射系数的统计模型计算可以很好地解释实验光谱。进行动力学轨迹模型计算以解释实验数据。衰变时间与形成时间的比较表明,在Si-28 + Al-27对称系统的情况下,在复合核完全弛豫之前优先发射带电粒子。本研究的结果表明,复合核的形成和衰变中存在入口通道依赖性。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:36]

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