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Related papers: Number of states for nucleons in a single-$j$ shel…

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We had previously used techniques involving isospin to count the number of states for three identical fermions in a single j shell with total angular momentum I=j. We generalize this to all I, but the main thrust of this work is to consider…

Nuclear Theory · Physics 2009-11-11 L. Zamick , A. Escuderos

It is here noted that in a calculation with four nucleons with isospin T=1 in a single J shell the states with angular momentum J=(J(max)+1)/2 lie very low and become either isomeric states or ground states.

Nuclear Theory · Physics 2012-07-18 Larry Zamick

We recently formulated a rule for isomeric states for a system of 4 nucleons with isospin T=1, namely that if the nucleons are in a single j shell then states with angular momenta J=2 and J=(2j-1) are either isomeric or ground states…

Nuclear Theory · Physics 2015-06-05 Larry Zamick , Alberto Escuderos

It is noted that in a calculation with 4 nucleons with isospin 1 in a single j shell (f_{7/2}, g_{9/2}, h_{11/2}) the state with median angular momentum J = (J_{max}+1)/2 lies very low in energy becoming either an isomeric state or a ground…

Nuclear Theory · Physics 2012-06-13 Larry Zamick , Alberto Escuderos

In a previous work we considered the number of pairs of particles with angular momentum J12 for systems with angular momentum zero.Here we extend the work to states of any total angular momentum.We find simplified relations satisfied for a…

Nuclear Theory · Physics 2009-11-11 L. Zamick

In this paper we study the enumeration of number (denoted as ${D_I}$) of spin $I$ states for fermions in a single-$j$ shell and bosons with spin $l$. We show that $D_I$ can be enumerated by the reduction from SU$(n+1)$ to SO(3). New…

Nuclear Theory · Physics 2007-05-23 Y. M. Zhao , A. Arima

In this paper we study $J$-pairing Hamiltonian and find that the sum of eigenvalues of spin $I$ states equals sum of norm matrix elements within the pair basis for four identical particles such as four fermions in a single-$j$ shell or four…

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

In this work, new recursion relations for the number of spin-J states for identical particles in a single-j shell are presented. Such relations are obtained using the generating-function technique, which enables one to exhibit an odd-even…

Nuclear Theory · Physics 2018-08-01 Jean-Christophe Pain

In this work we calculate the energies odd J$^{+}$ states in selectedeven-even nuclei-$^{44}$ Ti $^{52}$ Fe and $^{96}$Cd. Of particularinterest is the fact that in many cases the first T=0 and the first T=1 state are close in energy.…

Nuclear Theory · Physics 2018-07-11 Arun Kingan , Larry Zamick

It is noted that in single j-shell calculations certain odd-spin states in even--even nuclei lie in a narrow energy band; likewise certain states in odd--odd nuclei.

Nuclear Theory · Physics 2012-07-27 L. Zamick , A. Escuderos

In the present work available experimental data up to high-spin states of $^{119-126}$Sn isotopes with different seniority ($v$), including $v$ = 4, 5, 6, and 7 have been interpreted with shell model, by performing full-fledged shell model…

Nuclear Theory · Physics 2019-10-23 Praveen C. Srivastava , Bharti Bhoy , M. J. Ermamatov

In this talk I shall discuss some regularities of many-body systems in the presence of random interactions and regularities of a single-$j$ shell for the $J$ pairing interaction which works only when two particles are coupled to spin $J$. I…

Nuclear Theory · Physics 2016-09-08 A. Arima

Density matrix for N-qubit symmetric state or spin-j state (j = N/2) is expressed in terms of the well known Fano statistical tensor parameters. Employing the multiaxial representation [1], wherein a spin-j density matrix is shown to be…

Quantum Physics · Physics 2011-12-09 Swarnamala Sirsi , Veena Adiga

The 119-126Sn nuclei have been produced as fission fragments in two reactions induced by heavy ions: 12C+238U at 90 MeV bombarding energy, 18O+208Pb at 85 MeV. Their level schemes have been built from gamma rays detected using the Euroball…

In previous works we examined they systematics of magnetic dipole transitions in a single j shell. We here extend the study to large space calculations.We consider the nuclei $^{44}$ Ti, $^{46}$Ti and $^{48}$C. Of particular interest is the…

Nuclear Theory · Physics 2021-04-27 Arun Kingan , Michael Quinonez , Xiaofei Yu , Larry Zamick

It is pointed out that the ground state of n neutrons and n protons in a single-j shell, interacting through an isoscalar (T=0) pairing force, is not paired, J=0, but rather spin-aligned, J=n. This observation is explained in the context of…

Nuclear Theory · Physics 2016-09-21 P. Van Isacker , A. O. Macchiavelli , P. Fallon , S. Zerguine

In the present work we report comprehensive set of shell model calculations for arsenic isotopes. We performed shell model calculations with two recent effective interactions JUN45 and jj44b. The overall results for the energy levels and…

Nuclear Theory · Physics 2015-09-02 Vikas Kumar , P. C. Srivastava , Irving O. Morales

Analytical expressions of the total number of $J$ levels for three and four fermions in a nuclear $j^n$ shell are provided. The formulas were derived using a combination of sum rules for coefficients of fractional parentage, and "unusual"…

Nuclear Theory · Physics 2021-09-10 Jean-Christophe Pain

In the single j-shell, the configuration of an even-even Ti isotope consists of 2 protons and n neutrons. The I=0 wave function can be written in terms of D(J,Jv)'s, which are the probability amplitudes for the 2 protons to couple to J and…

Nuclear Theory · Physics 2007-05-23 L. Zamick , A. Escuderos , A. Mekjian

We count the number of pairs in the single j-shell model of {44}Ti for various interactions. For a state of total angular momentum I, the wave function can be written in terms of the probability amplitude D(Jp Jn) that the protons couple to…

Nuclear Theory · Physics 2007-05-23 L. Zamick , A. Escuderos , S. J. Lee , A. Z. Mekjian , E. Moya de Guerra , A. A. Raduta , P. Sarriguren
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