Table 2.
Nuclear-matter properties at saturation for all models considered in this work.
Model | ρ0 | E/A | K0 | Q0 | Z0 | Jsym,0 | Lsym,0 | Ksym,0 | Qsym,0 | Zsym,0 |
---|---|---|---|---|---|---|---|---|---|---|
FSU | 0.148 | –16.32 | 228 | –521 | 2815 | 32.5 | 60 | –51 | 426 | –6332 |
FSU2R | 0.1505 | –16.26 | 238 | 135 | 4982 | 30.7 | 47 | 56 | 190 | –10917 |
NL3ωρ | 0.148 | –16.24 | 270 | 198 | 9304 | 31.6 | 55 | –8.07 | 1396 | –13602 |
NLset21 | 0.156 | –16.12 | 216 | –339 | 6785 | 29 | 42 | 55 | 1146 | 14120 |
DDME2 | 0.152 | –16.14 | 251 | 479 | 4448 | 32. | 51 | –87 | 776 | –7047 |
DD2 | 0.149065 | –16.02 | 243 | 168 | 5233 | 31.7 | 55 | –93 | 598 | –5152 |
TW | 0.153 | –16.24 | 240 | –539 | 3749 | 32.5 | 55 | –124.7 | 538 | –3307 |
Notes. The quantities in the columns are: saturation density ρ0 (fm−3), binding energy per nucleon E/A, incompressibility K0, skewness Q0, kurtosis Z0, symmetry-energy coefficient Jsym,0, slope Lsym,0, curvature Ksym,0, skewness Qsym,0, and kurtosis Zsym,0 of the symmetry energy (all in MeV).
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