A large number of electronic devices contain charged, flat plates (electrodes) as their components. The approximation of considering such components as infinitely large plates is not satisfactory for the current status of consumer electronics where size is now extremely small. In particular, the nanotechnology revolution has made the fabrication of truly finite systems with arbitrary shape and characteristic lengths that measure in nanometers possible. As a result the only accurate approach for such situations is to consider the system realistically as one with a finite size extent. In this work we calculate the amount of electrostatic energy that is stored in a charged finite size electrode that is modelled as a uniformly charged rectangul...
Nanocapacitors have received a great deal of attention in recent years due to the promises of high e...
Closed-form expressions of the Coulomb electrostatic potential created by a uniformly charged disk a...
We use a novel method to calculate in closed form the Coulomb electrostatic potential created by a u...
A large number of electronic devices contain charged, flat plates (electrodes) as their components. ...
We calculate exactly the Coulomb self-energy of a uniformly charged three-dimensional cylinder. We d...
The most popular model for a two-dimensional electronic system considers electrons moving in a backg...
We report a concise expression for the electrostatic Coulomb self-energy of a uniformly charged cube...
In a previous work [O. Ciftja, Phys. Lett. A 374 (2010) 981] we reported the exact calculation of th...
I investigate the system-size dependence of the thermodynamic properties of classical Coulomb system...
The jellium model is commonly used in condensed matter physics to study the properties of a two-dime...
We calculate exactly in closed analytic form the Coulomb electrostatic potential created by a unifor...
The jellium model is commonly used in condensed matter physics to study the properties of a two-dime...
We provide theoretical insights on a mathematical approach used to calculate the Coulomb electrostat...
Knowledge of electrical potential and energy is important to systems where electrostatic forces play...
Nanocapacitors have received a great deal of attention in recent years due to the promises of high e...
Closed-form expressions of the Coulomb electrostatic potential created by a uniformly charged disk a...
We use a novel method to calculate in closed form the Coulomb electrostatic potential created by a u...
A large number of electronic devices contain charged, flat plates (electrodes) as their components. ...
We calculate exactly the Coulomb self-energy of a uniformly charged three-dimensional cylinder. We d...
The most popular model for a two-dimensional electronic system considers electrons moving in a backg...
We report a concise expression for the electrostatic Coulomb self-energy of a uniformly charged cube...
In a previous work [O. Ciftja, Phys. Lett. A 374 (2010) 981] we reported the exact calculation of th...
I investigate the system-size dependence of the thermodynamic properties of classical Coulomb system...
The jellium model is commonly used in condensed matter physics to study the properties of a two-dime...
We calculate exactly in closed analytic form the Coulomb electrostatic potential created by a unifor...
The jellium model is commonly used in condensed matter physics to study the properties of a two-dime...
We provide theoretical insights on a mathematical approach used to calculate the Coulomb electrostat...
Knowledge of electrical potential and energy is important to systems where electrostatic forces play...
Nanocapacitors have received a great deal of attention in recent years due to the promises of high e...
Closed-form expressions of the Coulomb electrostatic potential created by a uniformly charged disk a...
We use a novel method to calculate in closed form the Coulomb electrostatic potential created by a u...