The paper presents a cutting procedure that maps in-medium many-body divergences to vacuum diagrams, yielding A-independent counterterms for pionless EFT, demonstrated in the random phase approximation.
Dilute Fermi gas at fourth order in effective field theory
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abstract
Using effective field theory methods, we calculate for the first time the complete fourth-order term in the Fermi-momentum or $k_{\rm F} a_s$ expansion for the ground-state energy of a dilute Fermi gas. The convergence behavior of the expansion is examined for the case of spin one-half fermions and compared against quantum Monte-Carlo results, showing that the Fermi-momentum expansion is well-converged at this order for $| k_{\rm F} a_s | \lesssim 0.5$.
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Renormalization of pionless effective field theory in the A-body sector
The paper presents a cutting procedure that maps in-medium many-body divergences to vacuum diagrams, yielding A-independent counterterms for pionless EFT, demonstrated in the random phase approximation.