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Enhancement of modulation depth of an all-optical switch using an azo dye-ethyl red film 被引量:1
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作者 陆文强 陈桂英 +3 位作者 郝召锋 许京军 田建国 张春平 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第8期429-436,共8页
The polymethyl methacrylate (PMMA) film doped with an azo dye ethyl-red (ER) film is employed to demonstrate the properties of an all-optical switch by its photoinduced dichroism and birefringence. We show how to ... The polymethyl methacrylate (PMMA) film doped with an azo dye ethyl-red (ER) film is employed to demonstrate the properties of an all-optical switch by its photoinduced dichroism and birefringence. We show how to enhance remarkably the modulation depth of all-optical switches almost to 100% by using two linear polarization beams: one beam is inclined at 45° with respect to the probing beam and serves as a pumping beam, and the other beam is perpendicular to the probing beam and used as an erasing beam. Furthermore, a maximum-to-minimum output intensity ratio of 2000:1 is achieved in experiment, which is very useful and important for optical storages and image displays. 展开更多
关键词 all-optical switch azo dye ethyl-red film modulation depth
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Tunable magneto optic modulation based on magnetically responsive nanostructured magnetic fluid 被引量:1
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作者 白学坤 卜胜利 +3 位作者 王伦唯 王响 于国君 纪红柱 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第10期390-395,共6页
Magnetic fluid is a kind of functional composite material with nanosized structure and unique optical properties. The tunable magneto-optic modulation of magnetic fluid under external magnetic field, achieved by adjus... Magnetic fluid is a kind of functional composite material with nanosized structure and unique optical properties. The tunable magneto-optic modulation of magnetic fluid under external magnetic field, achieved by adjusting the polarization direction of incident light, is investigated theoretically and experimentally in this work. The corresponding modulation depth and response time are obtained. The accompanying mechanisms are clarified by using the theory of dichroism of magtietic fluid and the aggregation/disintegration processes of magnetic particles within magnetic fluid when the external magnetic field turns on/off. 展开更多
关键词 magnetic fluid tunable magneto-optic modulation modulation depth response time
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Transparent Thermally Tunable Microwave Absorber Prototype Based on Patterned VO2 Film
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作者 Zhengang Lu Yilei Zhang +5 位作者 Heyan Wang Chao Xia Yunfei Liu Shuliang Dou Yao Li Jiubin Tan 《Engineering》 SCIE EI CAS CSCD 2023年第10期198-206,共9页
Transparent microwave absorbers that exhibit high optical transmittance and microwave absorption capability are ideal,although having a fixed absorption performance limits their applicability.Here,a simple,transparent... Transparent microwave absorbers that exhibit high optical transmittance and microwave absorption capability are ideal,although having a fixed absorption performance limits their applicability.Here,a simple,transparent,and thermally tunable microwave absorber is proposed,based on a patterned vanadium dioxide(VO_(2))film.Numerical calculations and experiments demonstrate that the proposed VO_(2)absorber has a high optical transmittance of 84.9%at 620 nm;its reflection loss at 15.06 GHz can be thermally tuned from–4.257 to–60.179 dB,and near-unity absorption is achieved at 523.750 K.Adjusting only the patterned VO_(2)film duty cycle can change the temperature of near-unity absorption.Our VO_(2)absorber has a simple composition,a high optical transmittance,a thermally tunable microwave absorption performance,a large modulation depth,and an adjustable temperature tuning range,making it promising for application in tunable sensors,thermal emitters,modulators,thermal imaging,bolometers,and photovoltaic devices. 展开更多
关键词 Tunable microwave absorber VO_(2)film Optical transparent Near unity absorption Large modulation depth
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Multifunctional disk device for optical switch and temperature sensor 被引量:1
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作者 卞振宇 梁瑞生 +3 位作者 张郁靖 易丽璇 赖根 赵瑞通 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第10期518-521,共4页
A multifunctional surface plasmon polariton disk device coupled by two metal-insulator-metal(MIM) waveguides is proposed and investigated numerically with finite-difference time-domain simulation. It can be used as ... A multifunctional surface plasmon polariton disk device coupled by two metal-insulator-metal(MIM) waveguides is proposed and investigated numerically with finite-difference time-domain simulation. It can be used as optical switch and temperature sensor by filling disk with liquid crystal and ethanol, respectively. The simulation results demonstrate that the transmission characteristics of an optical switch can be manipulated by adjusting the radius of disk and the slit width between disk and MIM waveguides. The transmittance and modulation depth of optical switch at 1550 nm are up to 64.82% and 17.70 d B, respectively. As a temperature sensor, its figure of merit can reach 30.46. In this paper, an optical switch with better efficiency and a temperature sensor with better sensitivity can be achieved. 展开更多
关键词 surface plasmon polaritons optical switch modulation depth temperature sensor figure of merit
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Fringe optimization for structured illumination super-resolution microscope with digital micromirror device 被引量:1
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作者 Xibin Yang Qian Zhu +6 位作者 Zhenglong Sun Gang Wen Xin Jin Linbo Wang Jialin Liu Daxi Xiong Hui Li 《Journal of Innovative Optical Health Sciences》 SCIE EI CAS 2019年第3期78-86,共9页
Structured illumination microscopy(SIM)is a promising super-resolution technique for imaging subcellular structures and dynamics due to its compatibility with most commonly usedffuorescent labeling methods.Structured ... Structured illumination microscopy(SIM)is a promising super-resolution technique for imaging subcellular structures and dynamics due to its compatibility with most commonly usedffuorescent labeling methods.Structured illumination can be obtained by either laser interference or projection of fringe patterns.Here,we proposed a fringe projector composed of a compact multiwavelength LEDs module and a digital micromirror device(DMD)which can be directly attached to most commercial invertedffuorescent microscopes and update it into a SIM system.The effects of the period and duty cycle of fringe patterns on the modulation depth of the structured lightfield were studied.With the optimized fringe pattern,1:6×resolution improvement could be obtained with high-end oil objectives.Multicolor imaging and dynamics of subcellular organelles in live cells were also demonstrated.Our method provides a low-cost solution for SIM setup to expand its wide range of applications to most research labs in thefield of life science and medicine. 展开更多
关键词 Structured illumination SUPER-RESOLUTION digital micromirror device fringe pattern modulation depth
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Mechanically tunable broadband terahertz modulator based on high-aligned Ni nanowire arrays
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作者 相文峰 刘旋 +3 位作者 黄晓炜 周庆莉 郭海中 赵嵩卿 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第2期414-418,共5页
We present a mechanically tunable broadband terahertz(THz) modulator based on the high-aligned Ni nanowire(NW)arrays. The modulator is a sandwich structure consisting of two polydimethylsiloxane layers and a central l... We present a mechanically tunable broadband terahertz(THz) modulator based on the high-aligned Ni nanowire(NW)arrays. The modulator is a sandwich structure consisting of two polydimethylsiloxane layers and a central layer of highaligned Ni NW arrays. Our experimental measurements reveal the transmittance of THz wave can be effectively modulated by mechanical stretching. The NW density in arrays increases with the strain increasing, which induced an enhancement in the absorption of THz wave. When the strain increases from 0 to 6.5%, a linear relationship is observed for the variation of modulation depth(MD) of THz wave regarding the strain, and the modulated range is from 0 to 85% in a frequency range from 0.3 THz to 1.8 THz. Moreover, the detectable MD is about 15% regarding the 1% strain change resolution. This flexible Ni NW-based modulator can be promised many applications, such as remote strain sensing, and wearable devices. 展开更多
关键词 high-aligned Ni nanowire arrays flexible THz-wave modulator mechanical control modulation depth
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各向异性硫化锗薄片从饱和吸收到反饱和吸收的偏振可调非线性吸收模式及其在全光开关中的应用 被引量:4
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作者 欧阳昊 张晨希 +6 位作者 刘祺瑞 胡思扬 张峻 郝昊 尤洁 程湘爱 江天 《Science China Materials》 SCIE EI CSCD 2020年第8期1489-1502,共14页
近年来,一些二维层状材料,尤其是具有褶皱蜂窝结构的IV-VI族单硫化物,由于其特殊的各向异性化学和物理性质,而备受关注.在IV-VI族层状化合物MX(M=Ge,Sn;X=Se,S)中,硫化锗(GeS)以其最强的各向异性热导率和热电品质因子而引人注目.此外,Ge... 近年来,一些二维层状材料,尤其是具有褶皱蜂窝结构的IV-VI族单硫化物,由于其特殊的各向异性化学和物理性质,而备受关注.在IV-VI族层状化合物MX(M=Ge,Sn;X=Se,S)中,硫化锗(GeS)以其最强的各向异性热导率和热电品质因子而引人注目.此外,GeS薄片与层数无关的直接能带(Eg^1.6 eV,E1~2.1 eV)为可见光光探测器的应用提供了良好的应用前景.本文研究了GeS薄片的偏振可调非线性吸收模式,利用偏振相关拉曼光谱和线性吸收光谱表征了厚度为251 nm GeS的晶格取向和吸收能带.考虑到GeS薄片的较低的热损伤阈值,在不改变GeS非线性特性的前提下,制备了硫化锗/石墨烯异质结.非线性吸收结果表明,在硫化锗/石墨烯异质结中,利用偏振可调的600 nm线偏振飞秒激光沿扶手椅方向激发产生饱和吸收(SA)效应,沿锯齿方向激发反饱和吸收(RSA)效应.实验验证了基于偏振的硫化锗/石墨烯异质结全光开关的功能.值得注意的是,正因为GeS的偏振相关非线性吸收模式(SA/RSA),全光开关的"开"、"关"状态可通过控制飞秒开关激光(600 nm,35 fs500 Hz,12 GW cm-2)的偏振,进而改变连续光(CW)激光(532 nm,80 nW)透射率的方式来实现.通过改变开关光的偏振,开关比可以达到17%,与之相比,通过提高开关光入射功率获得的开关比仅为3.0%.本文介绍的偏振可调吸收模式,为基于硫化锗/石墨烯异质结的下一代光电子器件开辟了新的前景. 展开更多
关键词 polarization-tunable NA I-scan all-optical switch modulated depth
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