Signatures of the Giant Pairing Vibration in the 14C and 15C atomic nuclei
نویسندگان
چکیده
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.
منابع مشابه
توصیف برهمکنشهای بسذرهای هستهای در چارچوب نظریه تغییر شکل کوانتومی
A fermion realization of compact symplectic algebra provides a natural framework for studying pairing correlations of many-body interactions in nuclei. Here, we use quantum deformation concept in order to describe pairing correlations in atomic nuclei. While the nondeformed limit of the theory provides a reasonable and overall description of certain nuclear properties and fine structure effects...
متن کاملStudy of Giant Pairing Vibrations with neutron-rich nuclei
We investigate the possible signature of the presence of giant pairing states at excitation energy of about 10 MeV via two-particle transfer reactions induced by neutron-rich weakly-bound projectiles. Performing particle-particle RPA calculations on Pb and BCS+RPA calculations on Sn, we obtain the pairing strength distribution for two particles addition and removal modes. Estimates of two-parti...
متن کاملSTUDY OF NUCLEAR LEVEL DENSITY AND SPIN CUT-OFF FACTORS
Nuclear level densities and spin cut-off factors have been deduced for nuclei in the mass region 24‹A‹63,from a microscopic theory, which includes nuclear pairing interaction. Single particle levels for both Seeger and Nilsson potentials were used in the calcdations. Level densities extracted from the theory are compared with their conesponding experimental values, It is found that the overall...
متن کاملul 2 00 3 Semiclassical treatment of the ground state rotational band and of the isovector angle vibration for deformed superfluid nuclei 1
The definition of the pairing interaction for rotating systems is discussed, and a simple, mainly analytic model for its treatment is formulated. The results are used to describe microscopically the giant angle dipole resonance of the superfluid deformed nuclei in the semiclassical approximation of the cranking model.
متن کامل60 52 v 1 1 9 Ju n 20 03 Semiclassical treatment of the ground state rotational band and of the isovector angle vibration for deformed superfluid nuclei 1 Marius
The definition of the pairing interaction for rotating systems is discussed, and a simple, mainly analytic model for its treatment is formulated. The results are used to describe microscopically the giant angle dipole resonance of the superfluid deformed nuclei in the semiclassical approximation of the cranking model.
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 6 شماره
صفحات -
تاریخ انتشار 2015