Low-momentum NN interactions and all-order summation of ring diagrams of symmetric nuclear matter
L.-W. Siu, J. W. Holt, T. T. S. Kuo, G. E. Brown

TL;DR
This paper investigates the equation of state for symmetric nuclear matter using a ring-diagram approach with low-momentum NN interactions, highlighting the importance of intermediate momenta and medium dependence for accurate saturation properties.
Contribution
It introduces a comprehensive ring-diagram method with low-momentum interactions and demonstrates the significance of medium dependence and decimation scale in nuclear matter calculations.
Findings
Ring-diagram correlations at intermediate momenta are crucial for saturation.
Using $V_{low-k}$ with $ ext{Λ} ext{~} 3$ fm$^{-1}$ yields overestimated saturation properties.
Medium-dependent NN potentials align results with empirical saturation energy and density.
Abstract
We study the equation of state for symmetric nuclear matter using a ring-diagram approach in which the particle-particle hole-hole () ring diagrams within a momentum model space of decimation scale are summed to all orders. The calculation is carried out using the renormalized low-momentum nucleon-nucleon (NN) interaction , which is obtained from a bare NN potential by integrating out the high-momentum components beyond . The bare NN potentials of CD-Bonn, Nijmegen and Idaho have been employed. The choice of and its influence on the single particle spectrum are discussed. Ring-diagram correlations at intermediate momenta ( 2 fm) are found to be particularly important for nuclear saturation, suggesting the necessity of using a sufficiently large decimation scale so that the above momentum region is not integrated out. Using…
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