Erratum to: Controlling the plasmon resonance via epsilon-near-zero multilayer metamaterials
After the publication of this article, the authors found that Figure 2d is the same as Figure 3d and hereby correct Figure 2 as:

Evolution of the plasmon resonance with varying diameters of NDs on (a) glass (b) HMM-1, (c) HMM-2, and (d) spectral shift of the resonance, calculated by FDTD simulations. FDTD, finite-difference time-domain; HMM, hyperbolic metamaterial; ND, nanodisk.
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Author contributions: All the authors have accepted responsibility for the entire content of this submitted manuscript and approved submission.
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Research funding: None declared.
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Conflict of interest statement: The authors declare no conflicts of interest regarding this article.
© 2022 the author(s), published by De Gruyter, Berlin/Boston
This work is licensed under the Creative Commons Attribution 4.0 International License.
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- Erratum
- Erratum to: Controlling the plasmon resonance via epsilon-near-zero multilayer metamaterials
Articles in the same Issue
- Frontmatter
- Review
- Super-resolution optical microscopy using cylindrical vector beams
- Research Articles
- Multi-moded high-index contrast optical waveguide for super-contrast high-resolution label-free microscopy
- Resonant multilevel optical switching with phase change material GST
- Geometry-dependent skin effects in reciprocal photonic crystals
- Steering coherence in quantum dots by carriers injection via tunneling
- Nonlinear localized modes in one-dimensional nanoscale dark-state optical lattices
- Chirality-modulated photonic spin Hall effect in PT-symmetry
- Infrared nanoplasmonic properties of hyperdoped embedded Si nanocrystals in the few electrons regime
- Edge states in plasmonic meta-arrays
- Surface-wave coupling in double Floquet sheets supporting phased temporal Wood anomalies
- Ultrahigh-performance vector magnetic field sensor with wedge-shaped fiber tip based on surface plasmon resonance and magnetic fluid
- Erratum
- Erratum to: Controlling the plasmon resonance via epsilon-near-zero multilayer metamaterials