A propelled class of optical filaments are the photonic strands. Because of their capacity to keep light in empty centers, they accomplish high affectability and viability. High-sway diaries are those viewed as profoundly compelling in their particular fields. The most recent advancements have demonstrated that optical metasurfaces including a class of optical MMs with a decreased dimensionality can display extraordinary capacities for controlling the progression of light; accomplish the bizarrely huge photonic thickness of states; and, like their mass simple, give superresolution imaging. Such a planar photonics innovation is required to encourage new material science and improved usefulness for gadgets that are unmistakably not the same as those saw in their three-dimensional MM partners. Subsequently, this innovation will empower new applications in imaging, detecting, information stockpiling, quantum data handling, and light gathering.
Research Article: Journal of Lasers, Optics & Photonics
Research Article: Journal of Lasers, Optics & Photonics
Editorial: Journal of Lasers, Optics & Photonics
Editorial: Journal of Lasers, Optics & Photonics
Research Article: Journal of Lasers, Optics & Photonics
Research Article: Journal of Lasers, Optics & Photonics
Research Article: Journal of Lasers, Optics & Photonics
Research Article: Journal of Lasers, Optics & Photonics
Case Report: Journal of Lasers, Optics & Photonics
Case Report: Journal of Lasers, Optics & Photonics
Scientific Tracks Abstracts: Astrophysics & Aerospace Technology
Scientific Tracks Abstracts: Astrophysics & Aerospace Technology
Keynote: Astrophysics & Aerospace Technology
Keynote: Astrophysics & Aerospace Technology
Posters & Accepted Abstracts: Journal of Lasers, Optics & Photonics
Posters & Accepted Abstracts: Journal of Lasers, Optics & Photonics
Scientific Tracks Abstracts: Journal of Lasers, Optics & Photonics
Scientific Tracks Abstracts: Journal of Lasers, Optics & Photonics
Scientific Tracks Abstracts: Journal of Lasers, Optics & Photonics
Scientific Tracks Abstracts: Journal of Lasers, Optics & Photonics
Journal of Lasers, Optics & Photonics received 279 citations as per Google Scholar report