Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Zih‐Ying Yang"'
Autor:
Yu‐Sheng Chen, Zih‐Ying Yang, Ming‐Jyun Ye, Wen‐Hsiang Wu, Lu‐Hsing Chen, Hung‐Jung Shen, Satoshi Ishii, Tadaaki Nagao, Kuo‐Ping Chen
Publikováno v:
Advanced Physics Research, Vol 2, Iss 8, Pp n/a-n/a (2023)
Abstract Tamm plasmon polariton (TPP) resonance can be excited within the stopband of a distributed Bragg reflector (DBR) by combining a thin metal film. When exposured to hydrogen gas, the TPP resonance feature is redshifted for the TPPs structure w
Externí odkaz:
https://doaj.org/article/207c3e57ce75481fbe30851f0701feac
Autor:
Wen-Hui Xu, Yu-Hsun Chou, Zih-Ying Yang, Yi-Yun Liu, Min-Wen Yu, Chen-Hang Huang, Chun-Tse Chang, Chen-Yu Huang, Tien-Chang Lu, Tzy-Rong Lin, Kuo-Ping Chen
Publikováno v:
Advanced Photonics Research, Vol 3, Iss 1, Pp n/a-n/a (2022)
The ZnO‐based Tamm plasmon‐polariton (TPP) ultraviolet laser is realized with the strong electric field confinement in the active layer. A coupling between TPPs and photons with a Rabi splitting of ≈30 meV is observed at room temperature. Furth
Externí odkaz:
https://doaj.org/article/7e185f8632504ee2a833c9490f79553b
Autor:
Tzy-Rong Lin, Kuo-Ping Chen, Yu Hsun Chou, Min Wen Yu, Yi-Yun Liu, Chen-Yu Huang, Tien-Chang Lu, Chun-Tse Chang, Chen-Hang Huang, Wen-Hui Xu, Zih-Ying Yang
Publikováno v:
Advanced Photonics Research, Vol 3, Iss 1, Pp n/a-n/a (2022)
The ZnO‐based Tamm plasmon‐polariton (TPP) ultraviolet laser is realized with the strong electric field confinement in the active layer. A coupling between TPPs and photons with a Rabi splitting of ≈30 meV is observed at room temperature. Furth
Autor:
Tadaaki Nagao, Mao Guo Sun, Thang Duy Dao, Takahiro Yokoyama, Ivan V. Timofeev, Pavel S. Pankin, Zih Ying Yang, Satoshi Ishii, Kuo-Ping Chen
Publikováno v:
ACS Photonics. 4:2212-2219
This study experimentally demonstrates infrared wavelength selective thermal emission based on Tamm plasmon polaritons (TPPs). Unlike conventional TPP structures, which have a thin metal layer on a distributed Bragg reflector (DBR), the proposed stru
Autor:
Jhen Hong Yang, Zhong-Xing Zhou, Kuo-Ping Chen, Chi-Yin Yang, Viktoriia E. Babicheva, Zih-Ying Yang
Publikováno v:
Plasmonics: Design, Materials, Fabrication, Characterization, and Applications XVI.
High-refractive-index (HRI) dielectric metasurfaces have attracted a lot of attention recently due to their advantages of low non-radiative losses and high melting temperatures. Silicon is one of feasible HRI materials that has been widely used in so
Publikováno v:
Applied Physics A. 124
This study sought to optimize the dimensional characteristics of paired-strips gold nanoantennas embedded in a P3HT: PCBM thin-film by taking into account the tradeoff between the size of the nanostructures and absorber layer as well as the gaps betw
Autor:
Zih-Ying Yang, Satoshi Ishii, Takahiro Yokoyama, Thang Duy Dao, Mao-Guo Sun, Pavel S. Pankin, Ivan V Timofeev, Tadaaki Nagao, Kuo-Ping Chen
Publikováno v:
JSAP-OSA Joint Symposia 2017 Abstracts.
Selective thermal emitters have gathered great attention recently, which can radiate only in narrow band and reduce the radiation losses in other wavelengths [1]. In order to fabricate large area selective thermal emitters, a planar multilayer struct
Autor:
Kuo-Ping Chen, Zih Ying Yang
Publikováno v:
Optics express. 22(11)
This study focuses on determining the optimized thickness of an absorbing thin-film with embedded gold nanoantennas, for absorption enhancement. Gold paired-strips nanoantennas with small gaps have been proposed for light trapping because of the high
Autor:
Kuo-Ping Chen, Zih-Ying Yang
Publikováno v:
2013 IEEE 8th Nanotechnology Materials and Devices Conference (NMDC).
The finite element method (FEM) is used to investigate the near-field enhancement of gold paired-strips nanoantennas. The integral enhanced localized field within 100nm thin slab is 2.4 times larger than single-strip gratings.
Autor:
Zih Ying Yang, Kuo-Ping Chen
Publikováno v:
Frontiers in Optics 2013.
The finite element method (FEM) is used to investigate the near-field enhancement of gold paired-strips nanoantennas. The integral enhanced localized field within 100nm thin slab is 2.4 times larger than single-strip gratings.