We derived and thoroughly tested a bond-order potential (BOP) for body-centered-cubic (bcc) magnetic iron that can be employed in atomistic calculations of a broad variety of crystal defects that control structural, mechanical, and thermodynamic properties of this technologically important metal. The constructed BOP reflects correctly the mixed nearly free electron and covalent bonding arising from the partially filled d band as well as the ferromagnetism that is actually responsible for the stability of the bcc structure of iron at low temperatures. The covalent part of the cohesive energy is determined within the tight-binding bond model with the Green's function of the Schrödinger equation determined using the method of continued fractio...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
The development of interatomic potentials for magnetic transition metals, and particularly for iron,...
The development of interatomic potentials for magnetic transition metals, and particularly for iron,...
Bond-order potentials (BOPs), based on the tight binding (TB) approach for the evaluation of bonding...
Bond-order potentials (BOPs), based on the tight binding (TB) approach for the evaluation of bonding...
A new analytic bond-order potential for iron is presented that has been fitted to experimental data ...
We present a magnetic bond-order potential (BOP) that is able to provide a correct description of bo...
In this paper we present bond-order potentials (BOPs) based on the tight-binding method. The potenti...
ABSTRACT DEVELOPMENT OF BOND-ORDER POTENTIALS FOR BODY-CENTERED-CUBIC TRANSITION METALS AND THEIR AP...
A new development of numerical bond-order potentials (BOPs) for the non-magnetic transition metals V...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
The development of interatomic potentials for magnetic transition metals, and particularly for iron,...
The development of interatomic potentials for magnetic transition metals, and particularly for iron,...
Bond-order potentials (BOPs), based on the tight binding (TB) approach for the evaluation of bonding...
Bond-order potentials (BOPs), based on the tight binding (TB) approach for the evaluation of bonding...
A new analytic bond-order potential for iron is presented that has been fitted to experimental data ...
We present a magnetic bond-order potential (BOP) that is able to provide a correct description of bo...
In this paper we present bond-order potentials (BOPs) based on the tight-binding method. The potenti...
ABSTRACT DEVELOPMENT OF BOND-ORDER POTENTIALS FOR BODY-CENTERED-CUBIC TRANSITION METALS AND THEIR AP...
A new development of numerical bond-order potentials (BOPs) for the non-magnetic transition metals V...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...
The analytic bond-order potentials (BOPs) are derived by systematically coarse graining the electron...
We present a bond-order potential (BOP) for the bcc transition metal tungsten. The bond-order potent...