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Signatures of the Giant Pairing Vibration in the 14C and 15C atomic nuclei

机译:14 C和 15 C原子核中巨对振动的特征

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Giant resonances are collective excitation modes for many-body systems of fermions governed by a mean field, such as the atomic nuclei. The microscopic origin of such modes is the coherence among elementary particle-hole excitations, where a particle is promoted from an occupied state below the Fermi level (hole) to an empty one above the Fermi level (particle). The same coherence is also predicted for the particle–particle and the hole–hole excitations, because of the basic quantum symmetry between particles and holes. In nuclear physics, the giant modes have been widely reported for the particle–hole sector but, despite several attempts, there is no precedent in the particle–particle and hole–hole ones, thus making questionable the aforementioned symmetry assumption. Here we provide experimental indications of the Giant Pairing Vibration, which is the leading particle–particle giant mode. An immediate implication of it is the validation of the particle–hole symmetry.
机译:巨共振是费米多体系统的集体激发模式,费米系统受诸如原子核之类的平均场控制。这种模式的微观起源是基本粒子-空穴激发之间的相干性,其中粒子从费米能级以下(空穴)的占据状态提升到费米能级以上(粒子)的空态。由于粒子和空穴之间的基本量子对称性,因此对于粒子-粒子和空穴-空穴激发也预测了相同的相干性。在核物理学中,已经广泛报道了粒子-空穴扇形的巨模,但是尽管进行了几次尝试,但粒子-粒子和空穴-空穴的模式尚无先例,因此使上述对称性假设值得怀疑。在这里,我们提供巨对振动的实验指示,这是领先的粒子间粒子巨模式。它的直接含义是粒子-孔对称性的验证。

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