Related Experiment Video
Updated: May 9, 2026

Atomic Layer Deposition of Vanadium Dioxide and a Temperature-dependent Optical Model
Published on: May 23, 2018
Tunable subwavelength hot spot of dipole nanostructure based on VO2 phase transition
Jun-Bum Park1, Il-Min Lee, Seung-Yeol Lee
1National Creative Research Center for Active Plasmonics Application Systems Inter-University SemiconductorResearch Center and School of Electrical Engineering Seoul National University, Gwanak-Gu Gwanakro 1, Seoul151-744, South Korea.
Abstract:
We propose a novel approach to generate and tune a hot spot in a dipole nanostructure of vanadium dioxide (VO2) laid on a gold (Au) substrate. By inducing a phase transition of the VO2, the spatial and spectral distributions of the hot spot generated in the feed gap of the dipole can be tuned. Our numerical simulation based on a finite-element method shows a strong intensity enhancement difference and tunability near the wavelength of 678 nm, where the hot spot shows 172-fold intensity enhancement when VO2 is in the semiconductor phase. The physical mechanisms of forming the hot spots at the two-different phases are discussed. Based on our analysis, the effects of geometric parameters in our dipole structure are investigated with an aim of enhancing the intensity and the tunability. We hope that the proposed nanostructure opens up a practical approach for the tunable near-field nano-photonic devices.
Related Concept Videos
Induced Electric Dipoles
Since the absolute value of potential energy holds no physical meaning, its zero value can be chosen as per...
Phase Transitions: Vaporization and Condensation

