Corrigendum to: Janus metagrating for tailoring direction-dependent wavefronts
Following the publication of our paper [1], the authors wish to clarify two key parameters that were inadvertently omitted from both the main text and the Supplementary Material:
The operational frequency of the designed metagrating is 10 GHz.
The dielectric substrate material used in both simulations and experiments is F4BM300, with a relative permittivity of ε r = 3 and a loss tangent of tanδ = 0.0007.
These details are essential for the reproduction of the reported results. We apologize for any inconvenience this omission may have caused.
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Research funding: This research was supported by the Youth Program of the Nantong Natural Science Foundation (Grant No. JC2024046), the Talent Introduction Project of Nantong University (Grant No. 135424630060), and the Chinese Scholarship Council (Grant No. 202206280099).
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Author contributions: ZT and SNB conceived and initiated the research concept. ZT was responsible for the sample design, fabrication, theoretical derivation, numerical simulations, and experimental characterization. ZT and SNB jointly prepared the original manuscript draft and participated in its revision. SNB and JY provided overall project supervision and research direction. All authors contributed to data interpretation, results discussion, and critical review of the manuscript.
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Conflict of interest: Authors state no conflict of interest.
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Data availability: The data that support the findings of this study are available from the corresponding authors upon reasonable request.
Reference
[1] Z. Tan, J. Yi, and S. N. Burokur, “Janus metagrating for tailoring direction-dependent wavefronts,” Nanophotonics, vol. 14, no. 12, pp. 2229–2236, 2025. https://doi.org/10.1515/nanoph-2025-0140.Search in Google Scholar PubMed PubMed Central
© 2025 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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- Corrigendum to: Janus metagrating for tailoring direction-dependent wavefronts
Articles in the same Issue
- Frontmatter
- Research Articles
- All-photon logic gate calculation based on phase change materials
- Strong broadband intensity noise squeezing from infrared to terahertz frequencies in lasers with nonlinear dissipation
- Optical phased arrays for wavefront shaping in forward scattering media
- Oxygen vacancy-driven bandgap tuning and ultrafast laser performance in Bi2O2Se
- Phase-matched electron–photon interactions enabled by 3D-printed helical waveguides
- Deterministic time rewinding of waves in time-varying media
- Biomaterial-based random lasers achieved from peanut kernel doped with birch leaf–derived carbon dots
- Arbitrary polarization and rotation multiplexed metasurface hologram
- Statistical regimes of electromagnetic wave propagation in randomly time-varying media
- Neural network enabled wide field-of-view imaging with hyperbolic metalenses
- 3-dimensional plasmonic nanomotors enabled by independent integration of optical pulling and lateral forces
- Erratum
- Corrigendum to: Janus metagrating for tailoring direction-dependent wavefronts