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- W115758099 abstract "The usual concept of nuclear matter is discussed, and a generalization of this concept which allows a qualitative understanding of the effects of clustering phenomena is proposed. As an example of “generalized nuclear matter,” the properties of the ground state of a uniform extended system of structureless α particles are studied using the method developed by Wu and Feenberg for liquid He4. The Wu-Feenberg method requires the use of (i) a Bijl-Dingle-Jastrow wave function and (ii) the Kirkwood superposition approximation. The assumed α-α interactions fit the S-wave phase shifts up to a c.m. energy of 10 MeV. The results, in comparison with results from theoretical nuclear-matter calculations which entertain no clustering (both expressed in terms of the energy per nucleon as a function of the radius of the (average) volume per nucleon) are of value in making crude estimates of the percentage of the surface matter of a heavy nucleus which prefers to form into α clusters and in interpreting empirical values for the compressibility of nuclear matter." @default.
- W115758099 created "2016-06-24" @default.
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- W115758099 date "1966-10-01" @default.
- W115758099 modified "2023-09-25" @default.
- W115758099 title "Theory of α matter" @default.
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- W115758099 doi "https://doi.org/10.1016/0003-4916(66)90236-3" @default.
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