Insight into plasmonics: resurrection of modern-day science (invited)

被引:11
作者
Butt, M. A. [1 ]
机构
[1] Warsaw Univ Technol, Inst Microelect & Optoelect, Koszykowa 75, PL-00662 Warsaw, Poland
关键词
plasmonics; surface plasmon polariton; surface plasmon resonance; waveguide; sensors; solar energy harvesting; environmental monitoring; agriculture; WAVE-GUIDE; LASERS; NANOPARTICLES; GRATINGS; SENSORS;
D O I
10.18287/2412-6179-CO-1376
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Plasmonics is a field of research and technology that focuses on the interaction between light and free electrons in a metal structure called plasmon. The study of plasmonics has gained significant attention in recent years due to its potential for several applications and its ability to manipulate light at nanoscale dimensions. Plasmonics enables the control of light at the nanoscale, far beyond the diffraction limit of conventional optics. This allows for the development of new devices and technologies with enhanced performance and functionality. In this paper, recent advances in plasmonics in medicine, agriculture, agriculture, environmental monitoring, lasers and solar energy harvesting are reviewed. Despite these promising prospects, plasmonic devices must overcome obstacles such as significant energy losses, complicated production processes, and the need for better material characteristics. Plasmonics will continue to advance because of ongoing work in nanotechnology, material science, and engineering, which will make it a more significant field with a wide range of usages in the future. In the end, the advantages and the limitations related to the realization of plasmonic devices in the real world are discussed.
引用
收藏
页码:5 / 17
页数:13
相关论文
共 87 条
[11]   Focus on Plasmonics [J].
Bozhevolnyi, Sergey ;
Garcia-Vidal, Franciso .
NEW JOURNAL OF PHYSICS, 2008, 10
[12]   Tapered waveguide mode converters for metal-insulator-metal waveguide plasmonic sensors [J].
Butt, M. A. ;
Kazanskiy, N. L. ;
Khonina, S. N. .
MEASUREMENT, 2023, 211
[13]   Miniaturized Design of a 1 x 2 Plasmonic Demultiplexer Based on Metal-Insulator-Metal Waveguide for Telecommunication Wavelengths [J].
Butt, M. A. ;
Kazanskiy, N. L. ;
Khonina, S. N. .
PLASMONICS, 2023, 18 (02) :635-641
[14]   On-chip symmetrically and asymmetrically transformed plasmonic Bragg grating formation loaded with a functional polymer for filtering and CO2 gas sensing applications [J].
Butt, M. A. ;
Kazanskiy, N. L. ;
Khonina, S. N. .
MEASUREMENT, 2022, 201
[15]   A plasmonic colour filter and refractive index sensor applications based on metal?insulator?metal square -ring cavities [J].
Butt, M. A. ;
Khonina, S. N. ;
Kazanskiy, N. L. .
LASER PHYSICS, 2020, 30 (01)
[16]   Ultra-short lossless plasmonic power splitter design based on metal?insulator?metal waveguide [J].
Butt, M. A. ;
Khonina, S. N. ;
Kazanskiy, N. L. .
LASER PHYSICS, 2020, 30 (01)
[17]   Label-free detection of ambient refractive index based on plasmonic Bragg gratings embedded resonator cavity sensor [J].
Butt, M. A. ;
Kazanskiy, N. L. ;
Khonina, S. N. .
JOURNAL OF MODERN OPTICS, 2019, 66 (19) :1920-1925
[19]   Metal-Insulator-Metal Waveguide Plasmonic Sensor System for Refractive Index Sensing Applications [J].
Butt, Muhammad Ali ;
Kazanskiy, Nikolay Lvovich ;
Khonina, Svetlana Nikolaevna .
ADVANCED PHOTONICS RESEARCH, 2023, 4 (07)
[20]   Standard slot waveguide and double hybrid plasmonic waveguide configurations for enhanced evanescent field absorption methane gas sensing [J].
Butt, Muhammad Ali ;
Piramidowicz, Ryszard .
PHOTONICS LETTERS OF POLAND, 2022, 14 (01) :10-12