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Dive into the research topics where Zhenlong Xu is active.

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Featured researches published by Zhenlong Xu.


Applied Optics | 2014

Design of highly nonlinear photonic crystal fibers with flattened chromatic dispersion

Xuyou Li; Zhenlong Xu; Weiwei Ling; Pan Liu

A novel (to our knowledge) type of photonic crystal fiber (PCF) with high nonlinearity and flattened dispersion is proposed. The propagation characteristics of chromatic dispersion, effective area, and nonlinearity are studied numerically by using the full-vector finite element method. Several PCF designs with high nonlinearity and nearly zero flattened dispersion or broadband flattened, and even ultraflattened, dispersion over different wavelength bands are obtained by optimizing the structural parameters. One optimized PCF has a nearly zero ultraflattened dispersion of 2.3  ps/(nm·km) with a dispersion variation of 0.2  ps/(nm·km) over the C+L+U wavelength bands. In addition, the dispersion slope and nonlinear coefficient at 1.55 μm can be up to 2.2×10(-3)  ps/nm(2)·km and 33.2  W(-1)·km(-1), respectively. The designs proposed in this paper have bright prospects for applications in all-optical format conversion, supercontinuum generation, optical wavelength conversion, and many other fields.


Sensors | 2016

A Thermal Performance Analysis and Comparison of Fiber Coils with the D-CYL Winding and QAD Winding Methods

Xuyou Li; Weiwei Ling; Kunpeng He; Zhenlong Xu; Shitong Du

The thermal performance under variable temperature conditions of fiber coils with double-cylinder (D-CYL) and quadrupolar (QAD) winding methods is comparatively analyzed. Simulation by the finite element method (FEM) is done to calculate the temperature distribution and the thermal-induced phase shift errors in the fiber coils. Simulation results reveal that D-CYL fiber coil itself has fragile performance when it experiences an axially asymmetrical temperature gradient. However, the axial fragility performance could be improved when the D-CYL coil meshes with a heat-off spool. Through further simulations we find that once the D-CYL coil is provided with an axially symmetrical temperature environment, the thermal performance of fiber coils with the D-CYL winding method is better than that with the QAD winding method under the same variable temperature conditions. This valuable discovery is verified by two experiments. The D-CYL winding method is thus promising to overcome the temperature fragility of interferometric fiber optic gyroscopes (IFOGs).


Sensors | 2017

Temperature Dependence of Faraday Effect-Induced Bias Error in a Fiber Optic Gyroscope

Xuyou Li; Pan Liu; Xingxing Guang; Zhenlong Xu; Lianwu Guan; Guangchun Li

Improving the performance of interferometric fiber optic gyroscope (IFOG) in harsh environments, such as magnetic field and temperature field variation, is necessary for its practical applications. This paper presents an investigation of Faraday effect-induced bias error of IFOG under varying temperature. Jones matrix method is utilized to formulize the temperature dependence of Faraday effect-induced bias error. Theoretical results show that the Faraday effect-induced bias error changes with the temperature in the non-skeleton polarization maintaining (PM) fiber coil. This phenomenon is caused by the temperature dependence of linear birefringence and Verdet constant of PM fiber. Particularly, Faraday effect-induced bias errors of two polarizations always have opposite signs that can be compensated optically regardless of the changes of the temperature. Two experiments with a 1000 m non-skeleton PM fiber coil are performed, and the experimental results support these theoretical predictions. This study is promising for improving the bias stability of IFOG.


Optics Communications | 2015

Thermal effects of fiber sensing coils in different winding pattern considering both thermal gradient and thermal stress

Weiwei Ling; Xuyou Li; Zhenlong Xu; Zhiyong Zhang; Yanhui Wei


Optics Communications | 2015

Design of short polarization splitter based on dual-core photonic crystal fiber with ultra-high extinction ratio

Zhenlong Xu; Xuyou Li; Weiwei Ling; Pan Liu; Zhiyong Zhang


Optics Communications | 2016

Reduction of the Shupe effect in interferometric fiber optic gyroscopes: The double cylinder-wound coil

Weiwei Ling; Xuyou Li; Hanrui Yang; Pan Liu; Zhenlong Xu; Yanhui Wei


Applied Optics | 2015

Design of a pentagonal photonic crystal fiber with high birefringence and large flattened negative dispersion.

Xuyou Li; Pan Liu; Zhenlong Xu; Zhiyong Zhang


Chinese Optics Letters | 2015

Three-dimensional model of thermal-induced optical phase shifts in rotation sensing

Xuyou Li; Weiwei Ling; Yanhui Wei; Zhenlong Xu


Optics Communications | 2017

Drift suppression in a dual-polarization fiber optic gyroscope caused by the Faraday effect

Pan Liu; Xuyou Li; Xingxing Guang; Zhenlong Xu; Weiwei Ling; Hanrui Yang


Optics Communications | 2016

Temperature dependence of beat-length and confinement loss in an air-core photonic band-gap fiber

Zhenlong Xu; Xuyou Li; Yong Hong; Pan Liu; Hanrui Yang; Weiwei Ling

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Xuyou Li

Harbin Engineering University

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Weiwei Ling

Harbin Engineering University

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Pan Liu

Harbin Engineering University

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Hanrui Yang

Northeast Dianli University

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Yanhui Wei

Harbin Engineering University

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Zhiyong Zhang

Harbin Engineering University

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Xingxing Guang

Harbin Engineering University

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Chunmei Zhang

Harbin Engineering University

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Guangchun Li

Harbin Engineering University

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Lianwu Guan

Harbin Engineering University

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