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- W2000489099 abstract "One of the major challenge in experimental and theoretical nuclear physics is the understanding of the properties of nuclei with extreme neutron-to-proton ratios. The most extreme asymmetric nuclei are located at and beyond the neutron drip-line. The first question arising here is the location of the drip-line itself, i.e., where are the limits of nuclear stability. Experimentally, this question is answered today only for the lightest elements up to oxygen [1] with 24O (Z = 8) being the heaviest bound isotope. For fluorine (Z = 9), the drip-line lies considerably further out, with the heaviest bound isotope observed experimentally being 31F [2]. Figure 1 gives an overview on the nuclear chart for the light nuclides for elements up to the fluorine isotopes. Besides the stable (black) and bound (red and blue) isotopes, unbound nuclei that have been observed experimentally as resonance states are indicated as well by the green fields. The apparent anomalous behavior of the location of the drip-line for the o..." @default.
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- W2000489099 date "2014-04-03" @default.
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- W2000489099 title "Beyond the Neutron Drip-Line" @default.
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- W2000489099 doi "https://doi.org/10.1080/10619127.2014.882735" @default.
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