The electrical properties of conducting meshes are investigated numerically by solving the related Kirchhoff equations with the Lanczos algorithm. The method is directly inspired by the recursion technique widely used to study the electronic and vibrational spectra of solids. The method is demonstrated to be very efficient and fast when applied to resistor networks. It is used to calculate equivalent resistances between arbitrary pairs of nodes in simple resistive lattices. When the resistance fluctuates statistically from bond to bond, the method makes it possible to evaluate the fluctuations of the electrical properties of the network. It is also employed to assign an effective bulk resistivity to a discrete conducting three-dimensional m...
Abstract. We introduce a transfer-matrix formulation to compute the conductance of random resistor n...
We present detailed description of a computer method for the calculation of the conductivity of inh...
Resistor networks are not usually to be found in computing systems or most machinery, but they are s...
The electrical properties of conducting meshes are investigated numerically by solving the related K...
The electrical properties of conducting meshes are investigated numerically by solving the related K...
In this paper, we investigate the two-vertex resistance on four Archimedean lattices. This technique...
Lattice structures with lattice parameters in the mm range are routinely fabricated by additive manu...
Knowing the ohmic resistance in the materials allow to know in advance its electrical behavior when ...
International audienceWe describe technical details on a new method of calculating the conductivity ...
The resistance between two arbitrary points in an infinite triangle and hexagonal lattice networks o...
The electric resistance between two arbitrary nodes on any infinite lattice structure of resistors ...
A model able to forecast the electrical properties of crystalline composites is presented. Systems h...
The resistance between two arbitrary grid points of several infinite lattice structures of resistors...
International audienceIntroduces a transfer-matrix formulation to compute the conductance of random ...
For very long bars of size n x n x L, with L >> n, and n up to 18, we calculate the conductivity of...
Abstract. We introduce a transfer-matrix formulation to compute the conductance of random resistor n...
We present detailed description of a computer method for the calculation of the conductivity of inh...
Resistor networks are not usually to be found in computing systems or most machinery, but they are s...
The electrical properties of conducting meshes are investigated numerically by solving the related K...
The electrical properties of conducting meshes are investigated numerically by solving the related K...
In this paper, we investigate the two-vertex resistance on four Archimedean lattices. This technique...
Lattice structures with lattice parameters in the mm range are routinely fabricated by additive manu...
Knowing the ohmic resistance in the materials allow to know in advance its electrical behavior when ...
International audienceWe describe technical details on a new method of calculating the conductivity ...
The resistance between two arbitrary points in an infinite triangle and hexagonal lattice networks o...
The electric resistance between two arbitrary nodes on any infinite lattice structure of resistors ...
A model able to forecast the electrical properties of crystalline composites is presented. Systems h...
The resistance between two arbitrary grid points of several infinite lattice structures of resistors...
International audienceIntroduces a transfer-matrix formulation to compute the conductance of random ...
For very long bars of size n x n x L, with L >> n, and n up to 18, we calculate the conductivity of...
Abstract. We introduce a transfer-matrix formulation to compute the conductance of random resistor n...
We present detailed description of a computer method for the calculation of the conductivity of inh...
Resistor networks are not usually to be found in computing systems or most machinery, but they are s...