TIME-DEPENDENT NUCLEAR ENERGY-DENSITY FUNCTIONAL THEORY TOOLKIT FOR NEUTRON STAR CRUST: DYNAMICS OF A NUCLEUS IN A NEUTRON SUPERFLUID

Time-Dependent Nuclear Energy-Density Functional Theory Toolkit for Neutron Star Crust: Dynamics of a Nucleus in a Neutron Superfluid

We present a new numerical tool designed to probe the dense layers of neutron star crusts.It is based on the time-dependent Hartree-Fock-Bogoliubov theory with generalized Skyrme nuclear energy-density functionals of the Brussels-Montreal family.We use it to study the time evolution of a nucleus accelerating through superfluid neutron medium in the

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Thermo-diffusion and non-uniform heat source/sink effects on hydromagnetic flow of Cu and TiO2 water - based nanofluid partially filled with a porous medium

The study of nanofluids is important due to its vast public health potential.There exist many biomedical applications for nanofluids including drug delivery, magnetic cell separation, hyperthermia testing, photoablation therapy, biosensor development, bone-substituting implants, bioimaging, cell labeling, and gene delivery.Nanofluids are useful in

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