38,553 research outputs found
Three-body force effect on neutrino emissivities of neutron stars within the framework of the Brueckner-Hartree-Fock approach
The three-body force (TBF) effect on the neutrino emissivity in neutron star
matter and the total neutrino emissivity of neutron stars have been
investigated within the framework of the Brueckner-Hartree-Fock approach by
adopting the AV18 two-body interaction plus a microscopic TBF. The neutrino
emissivity from the direct Urca process turns out to be much larger than that
from the modified Urca process. Inclusion of the TBF reduces strongly the
density thresholds of the direct Urca processes involving electrons and muons.
The TBF effect on the total neutrino emissivity of neutron stars is shown to be
negligibly weak for neutron stars with small masses. For neutron stars with
large masses, the TBF effect becomes visible and inclusion of the TBF may
enhance the total neutrino emissivity by about 50% for neutron stars with a
given mass of .Comment: 7 pages, 3 figure
Control of spiral waves and turbulent states in a cardiac model by travelling-wave perturbations
We propose a travelling-wave perturbation method to control the
spatiotemporal dynamics in a cardiac model. It is numerically demonstrated that
the method can successfully suppress the wave instability (alternans in action
potential duration) in the one-dimensional case and convert spiral waves and
turbulent states to the normal travelling wave states in the two-dimensional
case. An experimental scheme is suggested which may provide a new design for a
cardiac defibrillator.Comment: 9 pages, 5 figure
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