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Dive into the research topics where Yi-Ping Chen is active.

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Featured researches published by Yi-Ping Chen.


Optics Express | 2011

Effects of the tip shape on the localized field enhancement and far field radiation pattern of the plasmonic inverted pyramidal nanostructures with the tips for surface-enhanced Raman scattering

Hsin-Hung Cheng; Shih-Wen Chen; Ying-Yu Chang; Jen-You Chu; Ding-Zheng Lin; Yi-Ping Chen; Jia-Han Li

The plasmonic 2D W-shape and 3D inverted pyramidal nanostructures with and without the tips are studied. The effects of the tip height and tip tilt angle on the near field enhancement and far field radiation pattern are discussed in this paper. The localized hot spots are found around the pits and the radiation pattern can be affected by the tip structures. The inverted pyramidal nanostructures with and without the tips were fabricated and their reflection spectra and surface-enhanced Raman scattering (SERS) signals for the chemical molecules thiophenol were measured. The simulation according to the geometry parameters of the fabricated structures is demonstrated. We found that the SERS of our proposed structures with the tips can have stronger light field enhancements than the inverted pyramidal nanostructures without the tips, and the far field radiation pattern can be varied by changing the tip height and tip tilt angle. The study of surface plasmon modes and charge distributions can help the understanding of how to arrange the plasmonic structures to achieve high field enhancement and preferred far field radiation pattern. Our study can be useful for the design of the strong field enhancement SERS substrate with specific far field radiation properties. It can be also applied to the portable Raman detectors for in situ and remote measurements in specific applications.


Applied Physics Letters | 2012

Light trapping enhancements of inverted pyramidal structures with the tips for silicon solar cells

Hsin-Hung Cheng; Ying-Yu Chang; Jen-You Chu; Ding-Zheng Lin; Yi-Ping Chen; Jia-Han Li

The anti-reflection properties of the inverted pyramidal structures with the tips for crystalline silicon solar cells are studied numerically and experimentally, and the comparisons with inverted pyramidal structures without the tips are given. Because the light has more multiple reflection between different surfaces of the inverted pyramidal structures with the tips and more light energies are trapped and absorbed by the solar cell materials, the structures with the tips can have smaller reflection. This study can be useful for the designs of textured structures for the solar cells or other anti-reflection applications.


Archive | 2014

Light Trapping for Solar Cells

Hsin-Hung Cheng; Shih-Wen Chen; Jen-You Chu; Ding-Zheng Lin; Tsung-Dar Cheng; Yi-Ping Chen; Ying-Yu Chang; Hung-Ying Yang; Yung-Ming Yeh; Yu-Sheng Wang; Jia-Han Li

The textured microstructures and the photonic nanostructures for light trapping structures are discussed. The inverted pyramidal microstructures with and without the tips were fabricated, and their light trapping performances were measured by the reflectance spectroscopy and simulated by ray tracing method. It is found that there are more chances of light reflecting between the surfaces of the tips and the inverted pyramids. Four kinds of nanophotonic light trapping structures are simulated by the finite-difference time-domain method, and their optical transmissions and light trapping performances are calculated. The results show that mixing the dielectric and metallic nanoparticles or materials can have superior light trapping performances as comparing to using dielectric nanoparticles only or using metallic nanoparticles only. The other kinds of light trapping structures and their outlooks are also given.


Archive | 2010

TRACE DETECTION DEVICE OF BIOLOGICAL AND CHEMICAL ANALYTES AND DETECTION METHOD APPLYING THE SAME

Ding-Zheng Lin; Tien-Li Chang; Jen-You Chu; Yi-Ping Chen; Pei-Chen Chuang; Bean-Jon Li; Chiung-Hui Huang; Jyi-Tyan Yeh


Archive | 2012

Surface-enhanced raman scattering substrate and a trace detection method of a biological and chemical analyte using the same

Ding-Zheng Lin; Yi-Ping Chen; Tsung-Dar Cheng; I-Ling Kao; Ping-Chen Chen


Archive | 2012

PACKAGE STRUCTURE AND SOLAR CELL WITH THE SAME

Tsung-Dar Cheng; Jen-You Chu; Yi-Ping Chen; Ping-Chen Chen


Archive | 2010

MULTILAYERED INFRARED LIGHT REFLECTIVE STRUCTURE

Hsiang-Chuan Chen; Mei-Ching Chiang; Chin-Ching Lin; Jen-You Chu; Yi-Ping Chen; Pao-Tang Chung


Archive | 2011

Multi-reflection structure and photo-electric device

Tsung-Dar Cheng; Jen-You Chu; Ding-Zheng Lin; Yi-Ping Chen; Jia-Han Li; Hsin-Hung Cheng; Ying-Yu Chang


Archive | 2014

Photo-electric device with inverse pyramid shaped recesses

Tsung-Dar Cheng; Jen-You Chu; Ding-Zheng Lin; Yi-Ping Chen; Jia-Han Li; Hsin-Hung Cheng; Ying-Yu Chang


Frontiers in Optics | 2011

Localized Field Enhancement and Far Field Directivities of the Specific Nanostructures for Surface-enhanced Raman Scattering

Hsin-Hung Cheng; Ying-Yu Chang; Jen-You Chu; Ding-Zheng Lin; Yi-Ping Chen; Jia-Han Li

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Jen-You Chu

Industrial Technology Research Institute

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Ding-Zheng Lin

Industrial Technology Research Institute

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Jia-Han Li

Industrial Technology Research Institute

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Hsin-Hung Cheng

Industrial Technology Research Institute

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Tsung-Dar Cheng

Industrial Technology Research Institute

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Ying-Yu Chang

Industrial Technology Research Institute

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Shih-Wen Chen

National Taiwan University

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Bean-Jon Li

Industrial Technology Research Institute

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Chin-Ching Lin

Industrial Technology Research Institute

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Chiung-Hui Huang

Industrial Technology Research Institute

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