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Ultrasonic Pulse Signal Resonance Features in Layered CFRP Within Voids 被引量:1
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作者 杨辰龙 陈越超 +1 位作者 WANG Zhe ZHENG Huifeng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第3期695-702,共8页
The ultrasonic pulse signal resonance features in layered carbon fiber reinforced plastic(CFRP) within voids were researched. The frequency domain model of acoustic wave propagation in multilayered medium was establ... The ultrasonic pulse signal resonance features in layered carbon fiber reinforced plastic(CFRP) within voids were researched. The frequency domain model of acoustic wave propagation in multilayered medium was established. Then the reflection coefficient of multilayered CFRP within voids was numerically calculated. The results are as follows. When the CFRP laminate is tested by ultrasonic whose center frequency is close to the CFRP inherent resonant frequency, the ultrasonic may generate resonance phenomenon in CFRP. If CFRP contains evenly distributed voids, the frequency of resonant signal and its amplitude all decrease with the increase of porosity. For the thick section CFRP within local concentrated voids, the local concentrated voids near testing surface will cause signal frequency reduction and the decrease of its amplitude. But the voids which exist in layers far away from testing surface almost have no influence on signal resonance. The ultrasonic pulse echo testing was conducted for thick section CFRP specimen. The analysis results of testing signals were in accordance with the results of the numerical calculation, showing that the reflection coefficient frequency response model can effectively explain the ultrasonic resonance phenomenon in layered CFRP within voids. 展开更多
关键词 carbon fiber reinforced plastic void resonance reflection coefficient frequency response
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Analysis of restriction factors of widening diffraction bandwidth of multilayer dielectric grating
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作者 汪剑鹏 晋云霞 +2 位作者 麻健勇 邵建达 范正修 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第10期265-272,共8页
In order to design a multilayer dielectric grating with wide-bandwidth diffraction spectrum, the restriction factors of both the reflection bandwidth of multilayer dielectric high-reflectivity mirror and the guided-mo... In order to design a multilayer dielectric grating with wide-bandwidth diffraction spectrum, the restriction factors of both the reflection bandwidth of multilayer dielectric high-reflectivity mirror and the guided-mode resonance phe- nomenon are studied in detail. The reflection characteristics of high-reflectivity mirror in zeroth and -lst transmitted diffraction orders are quantitatively evaluated. It is found that the reflection bandwidth of high-reflectivity mirror in -lst transmitted diffraction order, which determines the final diffraction bandwidth of multilayer dielectric grating, is evidently compressed. Furthermore, it is demonstrated that the reducing of grating period is an effective approach to the elimination of guided mode resonance over a required broad band range both spectrally and angularly. In addition, the expressions for calculating the maximum period ensuring no guided mode resonance in the required bandwidth are derived. Finally, two high-efficiency pulse-compression gratings with broad-band are presented. 展开更多
关键词 multilayer dielectric grating broad band diffraction bandwidth reflection bandwidth guided-mode resonance
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TTA Special Section on Terahertz Sources and Devices
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作者 Sheng-Jiang Chang 《Journal of Electronic Science and Technology》 CAS CSCD 2016年第1期1-1,共1页
Studies on terahertz(THz)radiation and functiona devices have drawn increasing attention due to their applications in biological imaging and sensing nondestructive evaluation,national security,spectroscopy and high ... Studies on terahertz(THz)radiation and functiona devices have drawn increasing attention due to their applications in biological imaging and sensing nondestructive evaluation,national security,spectroscopy and high speed communication.Tunable THz sources based on difference frequency or parametric oscillation generation are highly efficient and reliable for these applications 展开更多
关键词 terahertz nondestructive drawn parametric resonant editorial crystalline matching reflecting oscillation
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Diode-pumped electro-optical cavity-dumped Tm:YAP laser at 1996.9 nm 被引量:2
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作者 姚宝权 李晓磊 +5 位作者 时红卫 戴通宇 崔铮 钱传鹏 鞠有伦 王月珠 《Chinese Optics Letters》 SCIE EI CAS CSCD 2015年第10期68-71,共4页
In this Letter, we demonstrate a diode-pumped electro-optical cavity-dumped Tm:YAP laser for the first time to our knowledge. A pulse width of 7.1 ns is achieved at a wavelength of 1996.9 nm. A maximum output power o... In this Letter, we demonstrate a diode-pumped electro-optical cavity-dumped Tm:YAP laser for the first time to our knowledge. A pulse width of 7.1 ns is achieved at a wavelength of 1996.9 nm. A maximum output power of 3.02 W is obtained with a pump power of 58.8 W at a repetition rate of 100 k Hz and a high-voltage time of 1000 ns, corresponding to an overall optical-to-optical conversion efficiency of 5.2%. In addition, we study the effect of repetition rate and high-voltage time on the output power characteristics of a cavity-dumped Tm:YAP laser. 展开更多
关键词 pumped repetition mirror profiling conclusion reflective schematic resonant lidar compensator
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Enhanced spin Hall effect of reflected light with guided-wave surface plasmon resonance 被引量:1
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作者 YUANJIANG XIANG XING JIANG +2 位作者 QI YOU JUN GUO XIAOYU DAI 《Photonics Research》 SCIE EI 2017年第5期467-472,共6页
The photonic spin Hall effect(SHE) has been intensively studied and widely applied, especially in spin photonics.However, the SHE is weak and is difficult to detect directly. In this paper, we propose a method to enha... The photonic spin Hall effect(SHE) has been intensively studied and widely applied, especially in spin photonics.However, the SHE is weak and is difficult to detect directly. In this paper, we propose a method to enhance SHE with the guided-wave surface-plasmon resonance(SPR). By covering a dielectric with high refractive index on the surface of silver film, the photonic SHE can be greatly enhanced, and a giant transverse shift of horizontal polarization state is observed due to the evanescent field enhancement near the interface at the top dielectric layer and air. The maximum transverse shift of the horizontal polarization state with 11.5 μm is obtained when the thickness of Si film is optimum. There is at least an order of magnitude enhancement in contrast with the transverse shift in the conventional SPR configuration. Our research is important for providing an effective way to improve the photonic SHE and may offer the opportunity to characterize the parameters of the dielectric layer with the help of weak measurements and development of sensors based on the photonic SHE. 展开更多
关键词 SI Enhanced spin Hall effect of reflected light with guided-wave surface plasmon resonance
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