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Related papers: N_p N_n Scheme Based on New Empirical Formula for …

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We report empirical findings that a simple formula in terms of the mass number $A$, the valence proton number $N_p$, and the valence neutron number $N_n$ can describe the essential trends of excitation energies $E_x$ of the first $2^+$ and…

Nuclear Theory · Physics 2015-06-26 Eunja Ha , Dongwoo Cha

We examine the effects of the additional term of the type $\sim e^{- \lambda' N_pN_n}$ on the recently proposed empirical formula for the lowest excitation energy of the $2^+$ states in even-even nuclei. This study is motivated by the fact…

Nuclear Theory · Physics 2008-02-13 Guanghao Jin , Jin-Hee Yoon , Dongwoo Cha

Recently, it was shown that a simple empirical formula, in terms of the mass and valence nucleon numbers, can describe the main trends of the yrast excitation energies of the natural parity states up to $10^+$ in even-even nuclei throughout…

Nuclear Theory · Physics 2010-02-08 Dooyoung Kim , Jin-Hee Yoon , Dongwoo Cha

We present a new expression for the energy of the lowest collective states in even-even nuclei throughout the entire periodic table. Our empirical formula is extremely valid and holds universally for all of the natural parity even multipole…

Nuclear Theory · Physics 2008-11-26 Doohwan Kim , Eunja Ha , Dongwoo Cha

It has recently been shown that a simple empirical formula, in terms of the mass number and the valence nucleon numbers, is able to describe the main trends of the lowest excitation energies of the natural parity even multipole states up to…

Nuclear Theory · Physics 2015-05-13 Guanghao Jin , Dongwoo Cha , Jin-Hee Yoon

We examine the common belief that the $N_pN_n$ scheme is manifested as a direct consequence of the valence proton-neutron interaction which has proven to be a dominant factor in developing collectivity in nuclei. We show that the…

Nuclear Theory · Physics 2015-05-13 Youngshin Byun , Guanghao Jin , Jin-Hee Yoon , Dongwoo Cha

The lowest excitation energies of the given multipole J^pi state (the J^pi yrast energies) are given for even-even nuclei throughout the entire periodic table. The yrast energies were calculated using the recently proposed empirical formula…

Nuclear Theory · Physics 2010-07-20 Guanhao Jin , Dooyoung Kim , Byeongnoh Kim , Jin-Hee Yoon , Dongwoo Cha

We present an empirical expression which holds for the lowest excitation energy of the natural parity states in even-even nuclei throughout the entire periodic table. This formula contains spin-dependent factors so that it is applied to…

Nuclear Theory · Physics 2015-05-13 Guanghao Jin , Dongwoo Cha , Jin-Hee Yoon

We applied our recently proposed empirical formula, a formula quite successful in describing essential trends of the lowest excitation energies of the natural parity even multipole states, to the lowest excitation energies of the natural…

Nuclear Theory · Physics 2008-11-26 Guanghao Jin , Jin-Hee Yoon , Dongwoo Cha

It has been shown recently that a simple formula in terms of the valence nucleon numbers and the mass number can describe the essential trends of excitation energies of the first $2^+$ states in even-even nuclei. By evaluating the first…

Nuclear Theory · Physics 2008-11-26 Eunja Ha , Dongwoo Cha

We investigate the correlation between integrated proton-neutron interactions obtained by using the up-to-date experimental data of binding energies and the $N_{\rm p} N_{\rm n}$, the product of valence proton number and valence neutron…

Nuclear Theory · Physics 2015-05-19 G. J. Fu , Hui Jiang , Y. M. Zhao , A. Arima

In this paper we present the systematics of excitation energies for even-even nuclei in two regions: the 50$<$Z$\le$66, 82$<$N$\le$104 region, and the 66$<$Z$<$82, 82$<$N$\le$104 region. Using the $N_pN_n$ scheme, we obtain compact…

Nuclear Theory · Physics 2009-11-10 Y. M. Zhao , A. Arima

The first excited 2+ energy states of nuclei give many substantial information related to the nuclear structure. Including these levels, all excited states of nuclei are shown regularities in spin, parity and energy. In the even-even…

Nuclear Theory · Physics 2022-01-19 S. Akkoyun , H. Kaya , Y. Torun

We consider two perturbative schemes to calculate excitation energies, each employing the Kohn-Sham Hamiltonian as the unperturbed system. Using accurate exchange-correlation potentials generated from essentially exact densities and their…

Condensed Matter · Physics 2009-10-30 Claudia Filippi , C. J. Umrigar , X. Gonze

We present an approximation scheme for the calculation of the principal excitation energies and transition moments of finite many-body systems. The scheme is derived from a first order approximation to the self energy of a recently proposed…

Chemical Physics · Physics 2009-10-30 Joachim Brand , Lorenz S. Cederbaum

We show that part of the empirical formula describing the gross features of the measured yrast energies of the natural parity even multipole states for even-even nuclei can be related to the rotational energy of nuclei. When the first term…

Nuclear Theory · Physics 2009-04-28 Eunja Ha , S. W. Hong

The rich phenomenology of quantum many-body systems such as atomic nuclei is complex to interpret. Often, the behaviour (e.g. evolution with the number of constituents) of measurable/observable quantities such as binding or excitation…

Nuclear Theory · Physics 2024-04-30 Vittorio Somà , Thomas Duguet

A new mechanism of nuclear excitation via two-photon electron transitions (NETP) is proposed and studied theoretically. As a generic example, detailed calculations are performed for the $E1E1$ $1s2s\,^1S_0 \rightarrow 1s^2\,^1S_0$…

Atomic Physics · Physics 2016-12-09 A. V. Volotka , A. Surzhykov , S. Trotsenko , G. Plunien , Th. Stöhlker , S. Fritzsche

We present a new approach for calculating electromagnetic excitation of nuclei as well as probabilities of emission and distributions of neutrons from decays of excited nuclear systems for ultrarelativistic, ultraperipheral heavy ion…

Nuclear Theory · Physics 2015-06-17 Mariola Klusek-Gawenda , Michal Ciemala , Wolfgang Schafer , Antoni Szczurek

We propose here a new model termed as the Differential Equation Model for the ground to first 2+ state excitation energy E2 of a given even-even nucleus, according to which the energy E2 is expressed in terms of its derivatives with respect…

Nuclear Theory · Physics 2014-05-21 R . C. Nayak , S. Pattnaik
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