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Cluster-liquid transition in finite, saturated fermionic systems (CROSBI ID 204912)

Prilog u časopisu | kratko priopćenje | međunarodna recenzija

Ebran, Jean-Paul ; Khan, Elias ; Nikšić, Tamara ; Vretenar, Dario Cluster-liquid transition in finite, saturated fermionic systems // Physical review. C, Nuclear physics, 89 (2014), 031303(R), 5. doi: 10.1103/PhysRevC.89.031303

Podaci o odgovornosti

Ebran, Jean-Paul ; Khan, Elias ; Nikšić, Tamara ; Vretenar, Dario

engleski

Cluster-liquid transition in finite, saturated fermionic systems

The role of saturation for cluster formation in atomic nuclei is analyzed by considering three length-scale ratios and performing deformation- constrained self-consistent mean-field calculations. The effect of clusterization in deformed light systems is related to the saturation property of the internucleon interaction. The formation of clusters at low nucleon density is illustrated by expanding the radius of O16 in a constrained calculation. A phase diagram shows that the formation of clusters can be interpreted as a hybrid state between the crystal and the liquid phases. In the hybrid cluster phase the confining potential attenuates the delocalization generated by the effective nuclear interaction.

energy density functional ; cluster formation

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Podaci o izdanju

89

2014.

031303(R)

5

objavljeno

0556-2813

1089-490X

10.1103/PhysRevC.89.031303

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Fizika

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