Nuclear properties for astrophysical and radioactive-ion-beam applications (II)
P. Möller, M. R. Mumpower, T. Kawano, and W. D. Myers
Theoretical Division, Los Alamos National Laboratory, New Mexico 87545, USA
ATOMIC
DATA
AND
NUCLEAR
DATA
TABLES
Accepted March 19, 2018, Atomic Data and Nuclear Data Tables
It has been assigned Los Alamos National Laboratory Preprint No LA-UR-18-21307.
Abstract:
We tabulate the ground-state odd-proton and odd-neutron spins and
parities, proton and neutron pairing gaps, one- and two-neutron
separation energies, quantities related to delayed one- and
two-neutron emission probabilities, average energy and average number
of emitted neutrons,
-decay energy release and half-life with respect to
Gamow-Teller decay with a phenomenological treatment
of first-forbidden decays, one- and two-proton separation energies, and
-decay energy release and half-life for 9318 nuclei ranging
from 16O to 339136 and extending from the proton drip line
to the neutron drip line [ATOMIC
DATA
AND
NUCLEAR
DATA
TABLES
66,131
(1995)].
The starting point of our present work is the
new study (FRDM(2012)) of nuclear ground-state masses and deformations
based on the finite-range droplet model and folded-Yukawa
single-particle potential published in a previous issue of
ATOMIC
DATA
AND
NUCLEAR
DATA
TABLES
109-110,1
(2016).
The -delayed neutron-emission probabilities and Gamow-Teller
-decay rates are obtained from a quasi-particle random-phase
approximation with single-particle levels and wave functions at the
calculated nuclear ground-state shapes as input quantities.
A development since 1997 is we now use a Hauser-Feshbach approach
to account for (n,)
competition and treat first-forbidden decay in a phenomenological
approach.
The complete manuscript in color
is
available for download.
The published table data are available as several, individual, computer-readable tables:
The table of proton and neutron spins for odd Z and/or odd N:
spinzandn-beta-2018.dat ,
in computer-readable format, is
available for download.
FORMAT: Z, Proton spin(def), N,
Neutron spin (def), A,
Proton spin(sph), Neutron spin(sph) ,
2, 3
FORTRAN format specification: (I5,F7.1,I5,F7.1,I6,F10.1,F10.1,F10.2,F10.2)
The first two spin values are the spins at calculated deformation
(regardless of 2 value).
The last two spin values are the spin assignment based on spherical
configuration (regardless of calculated deformation).
When 3 parity is not a good quantum number for the deformed
assignments
although the spins in these cases are listed positive.
In the comparison with experimental data in figures 1, 2, 3, and 4
in the paper we use the spherical assignment if 2 < 0.15.
The table of pairing gap
pairingdeltas-beta-2018.dat ,
in computer-readable format, is
available for download.
FORMAT: Z, p, N, n, A
FORTRAN format specification: (I5,F8.3,I5,F8.3,I5).
The table of the delayed neutron-emission-related quantities
pn-frdm2012-sdn-gtff-beoh350.dat ,
based on the QRPA+HF
in computer-readable format, are
available for download.
FORMAT: The format and quantities tabulated are explained in the first few lines of the file.
The table of electron-capture half-lives:
tlifec-beta-2018.dat ,
based on the QRPA+HF
in computer-readable format, are
available for download.
FORMAT: Z, A, Half-life (s)
FORTRAN format specification: (I5,I5,F20.5).
The table of -minus half-lives:
tlifminusff-beta-2018.dat ,
based on the QRPA+HF
in computer-readable format, are
available for download.
FORMAT: Z , A, Half-life (s)
FORTRAN format specification (I5,I4,F20.5).
The table of half-lives and Q values
of decay:
qalp+talph-beta-2018.dat ,
in computer-readable format, are
available for download.
The "exp" subscript does not mean "experiment" but
that 10 to the power of TLexp
gives the calculated half-life in seconds,
see below.
FORMAT: Z, N, A, Q(MeV), TLexp, TL(s)
FORTRAN format specification:(3I5,2E20.10)
10**TLexp is half-life in seconds and
TL is half-life in seconds.
We provide the 30 figures as individual .eps.gz and .pdf files files:
Figure
FIG01-ADNDT-BETA.eps.gz
in format .eps.gz and
FIG01-ADNDT-BETA-2018.pdf
in .pdf format is
available for download.
Figure
FIG02-ADNDT-BETA.eps.gz
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FIG02-ADNDT-BETA-2018.pdf
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Figure
FIG03-ADNDT-BETA.eps.gz
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FIG03-ADNDT-BETA-2018.pdf
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Figure
FIG04-ADNDT-BETA.eps.gz
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FIG04-ADNDT-BETA-2018.pdf
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FIG05-ADNDT-BETA.eps.gz
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FIG05-ADNDT-BETA-2018.pdf
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FIG06-ADNDT-BETA.eps.gz
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FIG06-ADNDT-BETA-2018.pdf
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FIG07-ADNDT-BETA.eps.gz
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FIG11-ADNDT-BETA.eps.gz
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FIG21-ADNDT-BETA-2018.pdf
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Figure
FIG22-ADNDT-BETA.eps.gz
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FIG22-ADNDT-BETA-2018.pdf
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FIG23-ADNDT-BETA.eps.gz
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FIG24-ADNDT-BETA.eps.gz
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FIG25-ADNDT-BETA.eps.gz
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Figure
FIG26-ADNDT-BETA.eps.gz
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FIG30-ADNDT-BETA.eps.gz
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FIG30-ADNDT-BETA-2018.pdf
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Peter Moller
Created: March 20 2018 -->
Last modified: March 22 2018