Article
Publicly Available
Frontmatter
Published/Copyright:
October 13, 2025
Published Online: 2025-10-13
©2025 Walter de Gruyter GmbH, Berlin/Boston
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
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