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Calculation of the Isobaric Analogue Resonance Using Shell Model in the Complex Energy Plane

机译:基于壳模型的复杂能平面等压模拟共振的计算

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摘要

A convenient tool for studying nuclei being far away from the beta stability line is the complex energy shell model (CXSM) in which the Berggren representation (Nucl. Phys. A 109:265, 1968) (BR) is used. The BR is formed from bound, resonant sates, and complex-energy scattering states. The parameters of isobaric analog resonance (IAR) are calculated in the framework of the Lane-model (Nucl. Phys. A 35:676, 1962) using CXSM. The novel feature of the present CXSM calculation is that the optical potentials used are complex. Results of the CXSM calculation are checked against those of the standard solution of the coupled channel Lane-equations (CC). The IAR parameters calculated by the CXSM agree well with that of the CC results for absorptive and emittive optical potentials. This agreement confirms the applicability of the CXSM calculation for complex potential.
机译:研究远离β稳定线的原子核的便捷工具是复杂能量壳模型(CXSM),其中使用了Berggren表示法(Nucl。Phys。A 109:265,1968)(BR)。 BR由束缚态,共振态和复能散射态形成。使用CXSM在Lane模型(Nucl.Phys.A 35:676,1962)的框架中计算等压模拟共振(IAR)的参数。当前CXSM计算的新颖特征是所使用的光势很复杂。将CXSM计算的结果与耦合通道车道方程(CC)的标准解进行比较。 CXSM计算出的IAR参数与吸收和发射光势的CC结果非常吻合。该协议确认了CXSM计算对于复杂电势的适用性。

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