Fiber‐optic technology emerged originally for applications in data transmission and telecommunications. However, sensors based on fiber‐optics have been developed rapidly because of their excellent sensing performances and capability to function in remote and harsh environments. The usage of fiber‐optic sensors has flourished in many fields over the past 30 years due to the fiber‐optic's inherent…
Advanced Photonics Research Template
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About the Advanced Photonics Research format
Advanced Photonics Research is a peer-reviewed journal published by Wiley, covering Photonic and Optical Devices, Metamaterials and Metasurfaces Applications, Plasmonic and Surface Plasmon Research.
| Publisher | Wiley |
|---|---|
| Reference style | Author–year (Chicago) Author–year — (Smith, 2023) in the text Smith, Ada, Ben Jones, and Cara Lee. 2023. "A Representative Article Title." Advanced Photonics Research 12 (3): 45–58.
Formats any DOI in Advanced Photonics Research style. No sign-up. |
| Publishes research in | Photonic and Optical Devices Metamaterials and Metasurfaces Applications Plasmonic and Surface Plasmon Research Photonic Crystals and Applications Perovskite Materials and Applications |
| ISSN | 2699-9293 |
| Citation impact (2-yr) | 2.65 |
| h-index | 44 |
| i10-index | 384 |
| Total citations | 12,653 |
| Article processing charge | $2,750 |
| Open access | Yes |
| Top institutions publishing here | Chinese Academy of Sciences |
| Journal website | onlinelibrary.wiley.com |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in Advanced Photonics Research per year
Citation impact of Advanced Photonics Research by publication year
Citations each year’s papers have accumulated so far — the most recent years are still building up.
Most-cited papers in Advanced Photonics Research
Topological photonics has emerged as a promising field in photonics that is able to shape the science and technology of light. As a significant degree of freedom, valley is introduced to design and construct photonic topological phases, with encouraging recent progress in applications ranging from on‐chip communications to terahertz lasers. Herein, the development of topological…
Holographic optical elements (HOEs) exhibit several unique properties in arbitrary wavefront recording and extraction. Versatile recording mechanisms and material availabilities further expand their design flexibilities. Augmented reality (AR) displays are emerging and transforming daily life. Applications of HOEs in AR have harvested numerous fruitful evolutionary and revolutionary progresses. Herein, the basic operation principles of HOEs…
Cholesteric liquid crystals (CLCs) are a major class of photonic materials that display selective reflection properties arising from their helical ordering. The temperature response of CLCs, comprising dynamic reflection color changes upon variation of temperature, is exploited using material systems consisting of small mesogenic molecules, polymer‐dispersed liquid crystals (PDLCs), polymer‐stabilized liquid crystals (PSLCs), or liquid‐crystalline…
Reconfigurable photonic systems featuring minimal power consumption are crucial for integrated optical devices in real‐world technology. Current active devices available in foundries, however, use volatile methods to modulate light, requiring a constant supply of power and significant form factors. Essential aspects to overcome these issues are the development of nonvolatile optical reconfiguration techniques which are…