activity
20062009
most citedElectrodynamics for Nuclear Matter in Bulk

18 citations · 26 across the 6 of their papers we have counts for

collaborators

6 papers

astro-ph.HE20096 cited

The Blackholic energy and the canonical Gamma-Ray Burst IV: the "long", "genuine short" and "fake - disguised short" GRBs

Remo Ruffini, Alexey G. Aksenov, Maria Grazia Bernardini +13

(Shortened) [...] After recalling the basic features of the "fireshell model", we emphasize the following novel results: 1) the interpretation of the X-ray flares in GRB afterglows…

astro-ph.SR2009

The Extended Nuclear Matter Model with Smooth Transition Surface

Jorge A. Rueda H., B. Patricelli, M. Rotondo +2

The existence of electric fields close to their critical value has been proved for massive cores of up to nucleons using a proton d…

astro-ph.SR2009

Analytic Solutions of the Ultra-relativistic Thomas-Fermi Equation

Michael Rotondo, Remo Ruffini, She-Sheng Xue

It is well known that the ultra-relativistic Thomas-Fermi equation, amply adopted in the study of heavy nuclei, admits an exact solution for a constant proton distribution within a…

astro-ph.SR20091 cited

On the relativistic and electrodynamical stability of massive nuclear density cores

Vladimir Popov, Michael Rotondo, Remo Ruffini +1

We present a unified treatment of nuclear density cores recovering the classic results for neutral atoms with heavy nuclei having a mass number and extrapolat…

astro-ph20081 cited

On the Mass to Charge Ratio of Neutron Cores and Heavy Nuclei

Barbara Patricelli, Michael Rotondo, Remo Ruffini

We determine theoretically the relation between the total number of protons and the mass number (the charge to mass ratio) of nuclei and neutron cores with the model re…

astro-ph200618 cited

Electrodynamics for Nuclear Matter in Bulk

Remo Ruffini, Michael Rotondo, She-Sheng Xue

A general approach to analyze the electrodynamics of nuclear matter in bulk is presented using the relativistic Thomas-Fermi equation generalizing to the case of $N \simeq (m_{\rm…