Related Experiment Video
Updated: Feb 1, 2026

Simulating Impacts of Ice Storms on Forest Ecosystems
Published on: June 30, 2020
First-Principles Nanocapacitor Simulations of the Optical Dielectric Constant in Water Ice
Anthony Mannino1,2, Graciele M Arvelos3, Kedarsh Kaushik1,2
1Stony Brook University, Physics and Astronomy Department, Stony Brook, New York 11794-3800, USA.
Abstract:
We introduce a combined density functional theory and nonequilibrium Green's function framework to compute the capacitance of nanocapacitors and directly extract the dielectric response of a subnanometer dielectric under bias. We identify that at the nanoscale conventional capacitance evaluations based on stored charge per unit voltage suffer from an ill-posed partitioning of electrode and dielectric charge. This partitioning directly impacts the geometric definition of capacitance through the capacitor width, which in turn makes the evaluation of dielectric response uncertain. This ambiguous separation further induces spurious interfacial polarizability when analyzed via maximally localized Wannier functions. Focusing on crystalline ice, we develop a robust charge-separation protocol that yields unique capacitance-derived polarizability and dielectric constants, unequivocally demonstrating that confinement alters neither ice's intrinsic electronic response nor its insensitivity to proton order. Our results lay the groundwork for rigorous interpretation of capacitor measurements in low-dimensional dielectric materials.
Related Concept Videos
Susceptibility, Permittivity and Dielectric Constant
The Uncertainty Principle
Capacitor With A Dielectric
Dielectrics are non-conducting materials with no free or loosely bound electrons. When a dielectric is...
Le Chatelier's Principle: Changing Concentration
States of Water
Water freezes when the intermolecular forces are greater than the kinetic energy. Unlike most other substances, water is less dense in its solid state than in its liquid state. This is because each water molecule can form...
Calculating the Equilibrium Constant
For example, gaseous nitrogen dioxide forms dinitrogen tetroxide according to this equation:

