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The nuclear mass at finite angular momenta

Ragnarsson, Ingemar LU ; Kondev, FG; Paul, ES; Riley, MA and Simpson, J (2004) In International Journal of Modern Physics E 13(1). p.87-96
Abstract
The definition of experimental shell energies for nuclear ground states is generalized to finite angular momenta corresponding to a systematic expansion of the (N, Z)-plane to an (N, Z, I) space. Special emphasis is put on high-spin states where it is expected that odd and even nuclei should have similar properties. Different coupling schemes are compared and energetically favoured conditions to build high-spin states are discussed.
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author
organization
publishing date
type
Contribution to journal
publication status
published
subject
in
International Journal of Modern Physics E
volume
13
issue
1
pages
87 - 96
publisher
World Scientific
external identifiers
  • wos:000220350700013
  • scopus:13944266096
ISSN
0218-3013
DOI
10.1142/S0218301304001771
language
English
LU publication?
yes
id
150615da-bd01-47a3-adef-4a9e8f28d06d (old id 284634)
date added to LUP
2007-10-30 15:27:25
date last changed
2017-01-01 06:51:26
@article{150615da-bd01-47a3-adef-4a9e8f28d06d,
  abstract     = {The definition of experimental shell energies for nuclear ground states is generalized to finite angular momenta corresponding to a systematic expansion of the (N, Z)-plane to an (N, Z, I) space. Special emphasis is put on high-spin states where it is expected that odd and even nuclei should have similar properties. Different coupling schemes are compared and energetically favoured conditions to build high-spin states are discussed.},
  author       = {Ragnarsson, Ingemar and Kondev, FG and Paul, ES and Riley, MA and Simpson, J},
  issn         = {0218-3013},
  language     = {eng},
  number       = {1},
  pages        = {87--96},
  publisher    = {World Scientific},
  series       = {International Journal of Modern Physics E},
  title        = {The nuclear mass at finite angular momenta},
  url          = {http://dx.doi.org/10.1142/S0218301304001771},
  volume       = {13},
  year         = {2004},
}