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Dive into the research topics where Xuewen Shu is active.

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Featured researches published by Xuewen Shu.


Journal of Lightwave Technology | 2002

Sensitivity characteristics of long-period fiber gratings

Xuewen Shu; Lin Zhang; Ian Bennion

We present a detailed investigation into the sensitivity of long-period fiber gratings (LPFGs) as a function of temperature, strain, and surrounding refractive index, with particular attention to the higher order cladding modes and the possibilities for ultrasensitive sensors. From a general theoretical analysis, we identify a general sensitivity factor which offers new physical insight into LPFG behavior and represents a useful design aid in conjunction with a set of measurand-specific sensitivity factors. Our analysis reveals the existence of turning points in the mode dispersion characteristics at which ultrasensitive operation may be obtained. In an extensive set of coordinated experiments, we verify the theoretical predictions with close agreement and provide demonstrations of the device behavior close to the turning points. Alternative sensor schemes for temperature, strain, and refractive index based, respectively, on measurement of the dual resonance characteristic of the modes and on the transmission characteristics close to the turning points, utilizing higher order modes of the LPFG, are presented. For two variables at least, we record the highest LPFG sensitivities yet reported.


optical fiber communication conference | 2007

Error-Free 320-Gb/s All-Optical Wavelength Conversion Using a Single Semiconductor Optical Amplifier

Y. Liu; E. Tangdiongga; Z. Li; H. de Waardt; A.M.J. Koonen; G.D. Khoe; Xuewen Shu; Ian Bennion; H.J.S. Dorren

We demonstrate error-free wavelength conversion at 320 Gb/s by employing a semiconductor optical amplifier that fully recovers in 56 ps. Error-free operation is achieved without using forward error correction technology. We employ optical filtering to select the blue sideband of the spectrum of the probe light, to utilize fast chirp dynamics introduced by the amplifier, and to overcome the slow gain recovery. This leads to an effective recovery time of less than 1.8 ps for the wavelength converter. The wavelength converter has a simple configuration and is implemented by using fiber-pigtailed components. The concept allows photonic integration


Optics Letters | 2001

Sampled fiber Bragg grating for simultaneous refractive-index and temperature measurement

Xuewen Shu; B.A.L. Gwandu; Y. Liu; Lin Zhang; Ian Bennion

We present a novel scheme for simultaneous measurement of temperature and refractive index by use of a single sampled fiber Bragg grating (SFBG). The intrinsic nature of a SFBG that possesses both fiber Bragg grating and long-period grating spectral responses permits the temperature effect to the measured solely from the former, whereas the refractive-index information is extracted from the latter. Using such a dual-parameter sensor, we successfully demonstrated measurement of the dependence on temperature of the refractive index of an aqueous solution of sucrose.


Optics Letters | 2002

Dependence of temperature and strain coefficients on fiber grating type and its application to simultaneous temperature and strain measurement

Xuewen Shu; Y. Liu; Donghui Zhao; B.A.L. Gwandu; Filip Floreani; Lin Zhang; Ian Bennion

We report an investigation of the dependence of the temperature and strain coefficients on the grating type for fiber Bragg gratings that are UV inscribed in B/Ge-codoped fiber with and without hydrogenation. The results reveal that all types of grating exhibit similar strain sensitivities but markedly different temperature sensitivities, greater for gratings inscribed in hydrogen-free rather than hydrogenated fiber and substantially less in type IA gratings than all others. The sensitivity characteristics of these gratings have been used to implement a new type of dual-grating sensor for simultaneous measurement of temperature and strain that has properties superior to those of previously reported structures.


IEEE Photonics Technology Letters | 2001

High-temperature sensitivity of long-period gratings in B-Ge codoped fiber

Xuewen Shu; Thomas D.P. Allsop; B.A.L. Gwandu; Lin Zhang; Ian Bennion

We report an investigation of thermal properties of long-period fiber gratings (LPFGs) of various periods fabricated in the conventional B-Ge codoped fiber. It has been found that the temperature sensitivity of the LPFGs produced in the B-Ge fiber can be significantly enhanced as compared with the standard telecom fiber. A total of 27.5-nm spectral shift was achieved from only 10/spl deg/C change in temperature for an LPFG with 240-/spl mu/m period, demonstrating a first ever reported high sensitivity of 2.75 nm//spl deg/C. Such an LPFG may lead to high-efficiency and low-cost thermal/electrical tunable loss filters or sensors with extremely high-temperature resolution. The nonlinear thermal response of the supersensitive LPG was also reported and first explained.


Nature Photonics | 2013

The laminar-turbulent transition in a fibre laser

Elena G. Turitsyna; S. V. Smirnov; Srikanth Sugavanam; Nikita Tarasov; Xuewen Shu; S. A. Babin; E.V. Podivilov; Dmitry Churkin; Gregory Falkovich; Sergei K. Turitsyn

Studying the transition from a linearly stable coherent laminar state to a highly disordered state of turbulence is conceptually and technically challenging, and of great interest because all pipe and channel flows are of that type. In optics, understanding how a system loses coherence, as spatial size or the strength of excitation increases, is a fundamental problem of practical importance. Here, we report our studies of a fibre laser that operates in both laminar and turbulent regimes. We show that the laminar phase is analogous to a one-dimensional coherent condensate and the onset of turbulence is due to the loss of spatial coherence. Our investigations suggest that the laminar-turbulent transition in the laser is due to condensate destruction by clustering dark and grey solitons. This finding could prove valuable for the design of coherent optical devices as well as systems operating far from thermodynamic equilibrium.


IEEE Photonics Technology Letters | 2000

Fiber grating Sagnac loop and its multiwavelength-laser application

Xuewen Shu; Shan Jiang; Dexiu Huang

We introduce a novel simple comb filter, which is based on a Sagnac interferometer with a fiber Bragg grating asymmetrically located in its fiber loop. The filter has advantages of simple design and easy fabrication, low insertion loss and low cost. Two filters with triple bandpasses and dual bandpasses, respectively, were fabricated and applied to an erbium-doped fiber ring laser. Stable triple-wavelength and dual-wavelength laser operations have been demonstrated.


Optics Letters | 2007

All-optical demultiplexing of 640 to 40 Gbits/s using filtered chirp of a semiconductor optical amplifier

E. Tangdiongga; Y. Liu; H. de Waardt; G.D. Khoe; A.M.J. Koonen; H.J.S. Dorren; Xuewen Shu; Ian Bennion

We present a high-capacity ultrafast all-optical time demultiplexer that can be employed to retrieve 40 gigabits/second (Gb/s) base-rate channels from a 640 Gb/s single-polarized signal. The demultiplexer utilizes ultrafast effects of filtered chirp of a semiconductor optical amplifier. Excellent demultiplexing performance is shown at very low switching powers: +8 dBm (640 Gb/s data) and -14 dBm (40 GHz clock). The demultiplexer has a simple structure and, in principle, allows monolithic integration.


Optics Express | 2013

Narrow-band generation in random distributed feedback fiber laser

Srikanth Sugavanam; Nikita Tarasov; Xuewen Shu; Dmitry Churkin

Narrow-band emission of spectral width down to ~0.05 nm line-width is achieved in the random distributed feedback fiber laser employing narrow-band fiber Bragg grating or fiber Fabry-Perot interferometer filters. The observed line-width is ~10 times less than line-width of other demonstrated up to date random distributed feedback fiber lasers. The random DFB laser with Fabry-Perot interferometer filter provides simultaneously multi-wavelength and narrow-band (within each line) generation with possibility of further wavelength tuning.


Optics Communications | 1999

Highly sensitive chemical sensor based on the measurement of the separation of dual resonant peaks in a 100-μm-period fiber grating

Xuewen Shu; Dexiu Huang

Abstract A novel chemical or surrounding refractive index sensing scheme based on the measurement of the separation of the dual resonant peaks in a long-period fiber grating with a period of 100 μm is demonstrated. Because the dual resonant peaks shift in opposite directions with the variation of surrounding refractive index, extremely high sensitivity can be achieved with the scheme. As an example, the minimum concentration change as small as 0.01% for aqueous solutions of cane sugar can be detected. The separation varied 229.2 nm and an average resolution of 4.8×10 −5 for the refractive index is achieved in the 1.33–1.44 index range.

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Fangcheng Shen

Huazhong University of Science and Technology

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Yueqing Du

Huazhong University of Science and Technology

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Y. Liu

University of Electronic Science and Technology of China

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