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Featured researches published by Qiang Jiang.


Journal of Optics | 2016

Influence of surface termination on inverse Goos–Hänchen shift of negatively refractive photonic crystals

Jinbing Hu; Binming Liang; Jiabi Chen; Xiaoshu Cai; Qiang Jiang; Songlin Zhuang

The effect of surface termination on the inverse Goos Hanchen (GH) shift of two dimensional (2D) negatively refractive photonic crystal (NRPhC) containing air holes arranged in hexagonal lattice in a dielectric background is investigated for TM polarization. Results show that the magnitude of the inverse GH shift of 2DNRPhC strongly depends on surface termination even for an incident beam with a fixed frequency and incidence angle. Further study by calculating the dispersion of surface mode of 2D-NRPhC as a function of surface termination reveals that 2DNRPhC presents large inverse Goos Hanchen shift at those terminations where surface mode is excited, that is, large inverse Goos-Hanchen shift originates from backward surface mode of 2DNRPhC. In addition, the coupling coefficient of incident field into the field of surface mode as a function of surface termination is studied and demonstrates above results. This paper provides technical information regarding the combination of various functional photonic elements in the design of integrated optical circuits.


Optics Letters | 2017

Direct measurement of the negative Goos–Hänchen shift of single reflection in a two-dimensional photonic crystal with negative refractive index

Qiang Jiang; Jiabi Chen; Binming Liang; Yan Wang; Jinbing Hu; Songlin Zhuang

The negative Goos-Hänchen shift (GHS) on a two-dimensional photonic crystal with an effective negative refractive index is investigated by simulation and experiment. The measured refractive index of the fabricated photonic crystal is nearly -0.44. The difference between the Goos-Hänchen shift of the transverse electric wave GTE and that of the transverse magnetic wave GTM (DGHS) in the height direction of a silicon rod is measured at three incident angles. The result shows that DGHS is always smaller than -GTM, thus GTE<0; therefore, the negative GHS does occur on the surface of the photonic crystal with a negative refractive index.


Optics Letters | 2016

Subwavelength imaging of a point source based on two-dimensional photonic crystals.

Hongliang Ma; Binming Liang; Songlin Zhuang; Jiabi Chen; Qiang Jiang; Junwei Ding

A new two-dimensional (2D) photonic crystal (PC) structure with effective refractive index approaching -1, consisting of periodic array air holes in silicon, is proposed. The light radiated from a point source can form an image through a single wedge PC. Numerical results show that the half-width of the image reaches 0.44λ, which is lower than half of the incident wavelength. In addition, the light through the combination of two of the same PCs can also form subwavelength imaging of which the half-width reaches 0.67λ, and the image almost flipped 180° compared with a point source.


IEEE Photonics Technology Letters | 2014

Influence of Temperature on Reflectivity of Symmetrical Metal-Cladding Optical Waveguide

Jinbing Hu; Jiabi Chen; Binming Liang; Qiang Jiang; Yan Wang; Songlin Zhuang

The influence of temperature on the reflectivity of symmetrical metal-cladding optical waveguide (SMCOW) is studied theoretically by means of single-factor investigation under spectral and angular interrogation mode of operation. The theoretical model for temperature dependence of reflectivity includes the temperature dependence of refractive index and thickness of guiding layer, the temperature dependence of the metal film thickness and metal-dielectric function. It is found that the effect of temperature on the reflectivity of SMCOW is mainly attributed to the temperature dependence of refractive index and thickness of guiding layer; on the contrary, the temperature properties of metal film hardly contribute to the influence of temperature on the reflectivity. Based on the analysis, the sensitivities of SMCOW with guiding layer made up of different optical glasses are computed under both spectral and angular interrogation. This letter is supposed to provide direction in designing SMCOW sensors against the temperature variation.


Nanophotonics and Micro/Nano Optics III | 2016

Double Doppler effect in two-dimensional photonic crystal with negative effective index

Qiang Jiang; Jiabi Chen; Binming Liang; Songlin Zhuang

The inverse Doppler effect in photonic crystal with negative refractive index had been proofed experimentally in our previous research. In this paper, we studied the spatial harmonics of Bloch wave propagating in such PhCs by FFT method. The lagging and front phase evolutions reveal that both backward wave and forward wave exist in these harmonics. Subsequently, we studied the double Doppler effect phenomenon that both the normal and inverse Doppler exist in one photonic crystal simultaneously by using the improved dynamic FDTD method which we made it suitable for dealing with moving objects. The simulative Doppler frequency shifts were consistent with the theoretical values. Our study provides a potential technology in measurement area.


ieee international conference on photonics | 2015

Analysis on the temperature property of sensors based on symmetrical metal-cladding optical waveguide

Xuexue Luo; Jiabi Chen; Binming Liang; Jinbing Hu; Qiang Jiang

The analysis of the temperature property of sensors based on symmetrical metal-cladding optical waveguide (SMCOW) is focused on analyzing the temperature property of reflectivity of SMCOW sensors, which is theoretically studied with single-factor investigation under spectral and angular interrogation scheme. There are mainly four factors influencing the temperature dependence of reflectivity, it is the temperature dependence of refractive index and thickness of guiding layer, along with the temperature dependence of the metal film thickness and metal-dielectric function. The simulation result shows that the effect of temperature on the reflectivity of SMCOW is mainly attributed to the temperature dependence of refractive index and thickness of guiding layeron the contrary, the temperature properties of metal film hardly contributes to the influence of temperature on the reflectivity. Based on the analysis, the sensitivities of SMCOW with guiding layer of different optical glasses are computed under both spectral and angular interrogation. This paper is supposed to provide direction in designing temperature-sensitive SMCOW structure sensors.


Archive | 2012

Two-dimensional photonic crystal tunable light power divider and working method

Rong Wang; Binming Liang; Aiqing Hu; Qiang Jiang


Optics Communications | 2015

Design and verification of the polarization beamsplitter based on photonic crystals

Ting Wang; Binming Liang; Qiang Jiang; Lun Gao; Jinbin Hu; Heng Cao; Jiabi Chen; Songlin Zhuang


arXiv: Optics | 2015

Energy flux pattern of inverse Goos-Hanchen shift in photonic crystals with negative index of refraction

Jinbing Hu; Binming Liang; Jiabi Chen; Qiang Jiang; Yan Wang; Songlin Zhuang


Optik | 2013

A liquid refractive index detect method based on negative refraction phenomenon in 2D photonic crystal structure

Aiqing Hu; Binming Liang; Qiang Jiang; Rong Wang; Songlin Zhuang

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Binming Liang

University of Shanghai for Science and Technology

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Jiabi Chen

University of Shanghai for Science and Technology

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Songlin Zhuang

University of Shanghai for Science and Technology

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Jinbing Hu

University of Shanghai for Science and Technology

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Aiqing Hu

University of Shanghai for Science and Technology

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Yan Wang

Jiangxi Normal University

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Rong Wang

University of Shanghai for Science and Technology

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Heng Cao

University of Shanghai for Science and Technology

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Hongliang Ma

University of Shanghai for Science and Technology

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Jinbin Hu

University of Shanghai for Science and Technology

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