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- W2020212824 abstract "The electromagnetic longitudinal and transverse inclusive responses for $^{12}mathrm{C}$, $^{40}mathrm{Ca}$, and $^{56}mathrm{Fe}$ are analyzed using the concept of y scaling. The longitudinal, ${F}_{L}$, and transverse, ${F}_{T}$, scaling functions are defined, and their experimental values are obtained and compared with the predictions of two theoretical approaches. The first one, based upon the impulse approximation, Hartree-Fock-type wave functions for finite nuclei, and final state interaction treated by complex optical potentials, yields a reasonable interpretation of ${F}_{L}$ but cannot predict the experimental splitting between ${F}_{L}$ and ${F}_{T}$. The second approach, based on an infinite nuclear matter model, quantitatively reproduces the experimental splitting when the spin and isospin dependence of the effective particle-hole interaction is properly taken into account. The effects of ensuremath{rho}-meson exchange and ensuremath{Delta}-hole intermediate states on the scaling functions are also analyzed." @default.
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- W2020212824 date "1989-04-01" @default.
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- W2020212824 title "y-scaling analysis of the electromagnetic longitudinal and transverse response functions" @default.
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- W2020212824 doi "https://doi.org/10.1103/physrevc.39.1425" @default.
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