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Broadband Dual-Input Doherty Power Amplifier Design Based on a Simple Adaptive Power Dividing Ratio Function
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作者 Dai Zhijiang Zhong Kang +2 位作者 Li Mingyu Pang Jingzhou Jin Yi 《China Communications》 SCIE CSCD 2024年第5期97-112,共16页
In this paper,a simple adaptive power dividing function for the design of a dual-input Doherty power amplifier(DPA)is presented.In the presented approaches,the signal separation function(SSF)at different frequency poi... In this paper,a simple adaptive power dividing function for the design of a dual-input Doherty power amplifier(DPA)is presented.In the presented approaches,the signal separation function(SSF)at different frequency points can be characterized by a polynomial.And in the practical test,the coefficients of SSF can be determined by measuring a small number of data points of input power.Same as other dualinput DPAs,the proposed approach can also achieve high output power and back-off efficiency in a broadband operation band by adjusting the power distribution ratio flexibly.Finally,a 1.5-2.5 GHz highefficiency dual-input Doherty power amplifier is implemented according to this approach.The test results show that the peak power is 48.6-49.7d Bm,and the 6-d B back-off efficiency is 51.0-67.0%,and the saturation efficiency is 52.4-74.6%.The digital predistortion correction is carried out at the frequency points of 1.8/2.1GHz,and the adjacent channel power ratio is lower than-54.5d Bc.Simulation and experiment results can verify the effectiveness and correctness of the proposed method. 展开更多
关键词 broadband doherty power amplifier dualinput efficiency enhancement load modulation
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A flexible ultra-broadband multi-layered absorber working at 2 GHz-40 GHz printed by resistive ink
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作者 汪涛 闫玉伦 +3 位作者 陈巩华 李迎 胡俊 毛剑波 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第2期329-333,共5页
A flexible extra broadband metamaterial absorber(MMA)stacked with five layers working at 2 GHz–40 GHz is investigated.Each layer is composed of polyvinyl chloride(PVC),polyimide(PI),and a frequency selective surface(... A flexible extra broadband metamaterial absorber(MMA)stacked with five layers working at 2 GHz–40 GHz is investigated.Each layer is composed of polyvinyl chloride(PVC),polyimide(PI),and a frequency selective surface(FSS),which is printed on PI using conductive ink.To investigate this absorber,both one-dimensional analogous circuit analysis and three-dimensional full-wave simulation based on a physical model are provided.Various crucial electromagnetic properties,such as absorption,effective impedance,complex permittivity and permeability,electric current distribution and magnetic field distribution at resonant peak points,are studied in detail.Analysis shows that the working frequency of this absorber covers entire S,C,X,Ku,K and Ka bands with a minimum thickness of 0.098λ_(max)(λ_(max) is the maximum wavelength in the absorption band),and the fractional bandwidth(FBW)reaches 181.1%.Moreover,the reflection coefficient is less than-10 dB at 1.998 GHz–40.056 GHz at normal incidence,and the absorptivity of the plane wave is greater than 80%when the incident angle is smaller than 50°.Furthermore,the proposed absorber is experimentally validated,and the experimental results show good agreement with the simulation results,which demonstrates the potential applicability of this absorber at 2 GHz–40 GHz. 展开更多
关键词 extra broadband physical model flexible metamaterial absorber MULTI-LAYER frequency selective surface
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Suppression of low-frequency ultrasound broadband vibration using star-shaped single-phase metamaterials
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作者 Rui Zhao Jian Zheng +4 位作者 Jin Guo Yunbo Shi Hengzhen Feng Jun Tang Jun Liu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期217-224,共8页
In order to suppress the low-frequency ultrasound vibration in the broadband range of 20 k Hz—100 k Hz,this paper proposes and discusses an acoustic metamaterial with low-frequency ultrasound vibration attenuation pr... In order to suppress the low-frequency ultrasound vibration in the broadband range of 20 k Hz—100 k Hz,this paper proposes and discusses an acoustic metamaterial with low-frequency ultrasound vibration attenuation properties,which is configured by hybrid arc and sharp-angle convergent star-shaped lattices.The effect of the dispersion relation and the bandgap characteristic for the scatterers in star-shaped are simulated and analyzed.The target bandgap width is extended by optimizing the geometry parameters of arc and sharp-angle convergent lattices.The proposed metamaterial configured by optimized hybrid lattices exhibits remarkable broad bandgap characteristics by bandgap complementarity,and the simulation results verify a 99%vibration attenuation amplitude can be obtained in the frequency of20 k Hz—100 k Hz.After the fabrication of the proposed hybrid configurational star-shaped metamaterial by 3D printing technique,the transmission loss experiments are performed,and the experimental results indicate that the fabricated metamaterial has the characteristics of broadband vibration attenuation and an amplitude greater than 85%attenuation for the target frequency.These results demonstrate that the hybrid configurational star-shaped metamaterials can effectively widen the bandgap and realize high efficiency attenuation,which has capability for the vibration attenuation in the application of highprecise equipment. 展开更多
关键词 Star-shaped metamaterials broadband Vibration attenuation Low-frequency ultrasound vibration Transmission loss
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Analysis of Aluminum Alloy Double-Pulse MIG Welding Arc Signal Characteristics Based on Broadband Mode Decomposition
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作者 Yin Si Zixiong Xia +2 位作者 Wei Liu Kexin Zhang Xiangyu Song 《Journal of Electronic Research and Application》 2024年第4期7-16,共10页
Welding voltage and current in arc signals are directly related to arc stability and welding quality.Process experiments with different parameters were organized according to the orthogonal experimental design method ... Welding voltage and current in arc signals are directly related to arc stability and welding quality.Process experiments with different parameters were organized according to the orthogonal experimental design method by constructing an aluminum alloy double-pulse metal inert gas(MIG)welding arc electric signal test platform.The data acquisition system of the aluminum alloy MIG welding process was established to obtain real-time arc signal information reflecting the welding process.The aluminum alloy’s collected double-pulse arc current signals are decomposed adaptively by broadband mode decomposition(BMD).The direct current(DC)signal,pulse signal,distortion signal,ripple signal,and noise signal are separated and extracted,and the composite multiscale fuzzy entropy(CMFE)is calculated for the component set of the electrical signal.The experimental results show that the current waveform obtained by the double-pulse MIG welding current signal is consistent with the corresponding weld forming diagram.Simultaneously,the composite multiscale fuzzy entropy is calculated for the arc characteristic parameters.The rationality of matching process parameters and arc stability of aluminum alloy’s double-pulse MIG welding were evaluated. 展开更多
关键词 Double-pulse MIG welding Electric arc signal broadband mode decomposition Welding stability
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Gradient carbonyl-iron/carbon-fiber reinforced composite metamaterial for ultra-broadband electromagnetic wave absorption by multi-scale integrated design 被引量:1
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作者 Qian Zhou Tiantian Shi +7 位作者 Bei Xue Shengyue Gu Wei Ren Fang Ye Xiaomeng Fan Wenyan Duan Zihan Zhang Lifei Du 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第6期1198-1206,共9页
The demand of high-end electromagnetic wave absorbing materials puts forward higher requirements on comprehensive performances of small thickness,lightweight,broadband,and strong absorption.Herein,a novel multi-layer ... The demand of high-end electromagnetic wave absorbing materials puts forward higher requirements on comprehensive performances of small thickness,lightweight,broadband,and strong absorption.Herein,a novel multi-layer stepped metamaterial absorber with gradient electromagnetic properties is proposed.The complex permittivity and permeability of each layer are tailored via the proportion of carbonyliron and carbon-fiber dispersing into the epoxy resin.The proposed metamaterial is further optimized via adjusting the electromagnetic parameters and geometric sizes of each layer.Comparing with the four-layer composite with gradient electromagnetic properties which could only realize reflection loss(RL)of less than−6 dB in 2.0-40 GHz,the optimized stepped metamaterial with the same thickness and electromagnetic properties realizes less than−10 dB in the relevant frequency range.Additionally,the RL of less than−15 dB is achieved in the frequency range of 11.2-21.4 GHz and 28.5-40 GHz.The multiple electromagnetic wave absorption mechanism is discussed based on the experimental and simulation results,which is believed to be attributed to the synergy effect induced by multi-scale structures of the metamaterial.Therefore,combining multi-layer structures and periodic stepped structures into a novel gradient absorbing metamaterial would give new insights into designing microwave absorption devices for broadband electromagnetic protections. 展开更多
关键词 broadband absorption METAMATERIALS gradient impedance multi-scale synergic effect
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Self-Supporting Nanoporous Copper Film with High Porosity and Broadband Light Absorption for Efficient Solar Steam Generation 被引量:2
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作者 Bin Yu Yan Wang +1 位作者 Ying Zhang Zhonghua Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第7期57-71,共15页
Solar steam generation(SSG)is a potential technology for freshwater production,which is expected to address the global water shortage problem.Some noble metals with good photothermal conversion performance have receiv... Solar steam generation(SSG)is a potential technology for freshwater production,which is expected to address the global water shortage problem.Some noble metals with good photothermal conversion performance have received wide concerns in SSG,while high cost limits their practical applications for water purification.Herein,a self-supporting nanoporous copper(NP-Cu)film was fabricated by one-step dealloying of a specially designed Al_(98)Cu_(2)precursor with a dilute solid solution structure.In-situ and ex-situ characterizations were performed to reveal the phase and microstructure evolutions during dealloying.The NP-Cu film shows a unique three-dimensional bicontinuous ligament-channel structure with high porosity(94.8%),multi scale-channels and nanoscale ligaments(24.2±4.4nm),leading to its strong broadband absorption over the 200–2500 nm wavelength More importantly,the NP-Cu film exhibits excellent SSG performance with high evaporation rate,superior efficiency and good stability.The strong desalination ability of NP-Cu also manifests its potential applications in seawater desalination.The related mechanism has been rationalized based upon the nanoporous network,localized surface plasmon resonance effect and hydrophilicity. 展开更多
关键词 Solar steam generation Nanoporous copper broadband solar absorption Localized surface plasmon resonance Seawater desalination Dealloying
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Dielectric loss enhancement induced by the microstructure of CoFe_(2)O_(4) foam to realize broadband electromagnetic wave absorption 被引量:1
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作者 Bin Shi Hongsheng Liang +2 位作者 Zijun Xie Qing Chang Hongjing Wu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第7期1388-1397,共10页
CoFe_(2)O_(4)has been widely used for electromagnetic wave absorption owing to its high Snoek limit,high anisotropy,and suitable saturation magnetization;however,its inherent shortcomings,including low dielectric loss... CoFe_(2)O_(4)has been widely used for electromagnetic wave absorption owing to its high Snoek limit,high anisotropy,and suitable saturation magnetization;however,its inherent shortcomings,including low dielectric loss,high density,and magnetic agglomeration,limit its application as an ideal absorbent.This study investigated a microstructure regulation strategy to mitigate the inherent disadvantages of pristine CoFe_(2)O_(4)synthesized via a sol–gel auto-combustion method.A series of CoFe_(2)O_(4)foams(S0.5,S1.0,and S1.5,corresponding to foams with citric acid(CA)-to-Fe(NO_(3))_(3)·9H_(2)O molar ratios of 0.5,1.0,and 1.5,respectively)with two-dimensional(2D)curved surfaces were obtained through the adjustment of CA-to-Fe^(3+)ratio,and the electromagnetic parameters were adjusted through morphology regulation.Owing to the appropriate impedance matching and conductance loss provided by moderate complex permittivity,the effective absorption bandwidth(EAB)of S0.5 was as high as 7.3 GHz,exceeding those of most CoFe_(2)O_(4)-based absorbents.Moreover,the EAB of S1.5 reached 5.0 GHz(8.9–13.9 GHz),covering most of the X band,owing to the intense polarization provided by lattice defects and the heterogeneous interface.The three-dimensional(3D)foam structure circumvented the high density and magnetic agglomeration issues of CoFe_(2)O_(4)nanoparticles,and the good conductivity of 2D curved surfaces could effectively elevate the complex permittivity to ameliorate the dielectric loss of pure CoFe_(2)O_(4).This study provides a novel idea for the theoretical design and practical production of lightweight and broadband pure ferrites. 展开更多
关键词 CoFe_(2)O_(4)foam LIGHTWEIGHT broadband absorption microstructure regulation dielectric loss
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Effects of time-delayed vibration absorber on bandwidth of beam for low broadband vibration suppression 被引量:1
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作者 Xiuting SUN Yipeng QU +1 位作者 Feng WANG Jian XU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第10期1629-1650,共22页
The effects of time-delayed vibration absorber(TDVA) on the dynamic characteristics of a flexible beam are investigated. First, the vibration suppression effect of a single TDVA on a continuous beam is studied. The fi... The effects of time-delayed vibration absorber(TDVA) on the dynamic characteristics of a flexible beam are investigated. First, the vibration suppression effect of a single TDVA on a continuous beam is studied. The first optimization criterion is given,and the results show that the introduction of time-delayed feedback control(TDFC) is beneficial to improving the vibration suppression at the anti-resonance band. When a single TDVA is used, the anti-resonance is located at a specific frequency by the optimum design of TDFC parameters. Then, in order to obtain low-frequency and broad bands for vibration suppression, multiple TDVAs are uniformly distributed on a continuous beam,and the relationship between the dynamic responses and the TDFC parameters is investigated. The obtained relationship shows that the TDVA has a significant regulatory effect on the vibration behavior of the continuous beam. The effects of the number of TDVAs and the nonlinearity on the bandgap variation are discussed. As the multiple TDVAs are applied, according to the different requirements on the location and bandwidth of the effective vibration suppression band, the optimization criteria for the TDFC parameters are given, which provides guidance for the applications of TDVAs in practical projects such as bridge and aerospace. 展开更多
关键词 time-delayed vibration absorber(TDVA) time-delayed feedback control(TDFC) parameter design criterion broadband vibration suppression
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Broadband multi-channel quantum noise suppression and phase-sensitive modulation based on entangled beam
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作者 邸克 谈帅 +2 位作者 程安宇 刘宇 杜佳佳 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第10期191-198,共8页
We present a theoretical scheme for broadband multi-channel quantum noise suppression and phase-sensitive modulation of continuous variables in a coupled resonant system with quantum entanglement properties.The effect... We present a theoretical scheme for broadband multi-channel quantum noise suppression and phase-sensitive modulation of continuous variables in a coupled resonant system with quantum entanglement properties.The effects of different coupling strengths,pumping power in suppressing quantum noise and controlling the width of quantum interference channels are analyzed carefully.Furthermore,quantum noise suppression at quadrature amplitude is obtained with phase-sensitive modulation.It shows that the entanglement strength of the output field and the quantum noise suppression effect can be enhanced significantly by a strong pumping filed due to interaction of pumping light with the nonlinear crystal.The full width at half maxima(FWHM)of the noise curve at the resonant peak(△=0 MHz)is broadened up to 2.17 times compared to the single cavity.In the strong coupling resonant system,the FWHM at △=0 MHz(△=±3.1 MHz)is also broadened up to 1.27(3.53)times compared to the weak coupling resonant system case.The multi-channel quantum interference creates an electromagnetically induced transparent-like line shape,which can be used to improve the transmission efficiency and stability of wave packets in quantum information processing and quantum memory. 展开更多
关键词 quantum entanglement broadband quantum interference phase-sensitive modulation
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Ultralight pyrolytic carbon foam reinforced with amorphous carbon nanotubes for broadband electromagnetic absorption
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作者 Luo Kong Sihan Luo +2 位作者 Shuyu Zhang Guiqin Zhang Yi Liang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第3期570-580,共11页
For electromagnetic wave-absorbing materials,maximizing absorption at a specific frequency has been constantly achieved,but enhancing the absorption properties in the entire band remains a challenge.In this work,a 3D ... For electromagnetic wave-absorbing materials,maximizing absorption at a specific frequency has been constantly achieved,but enhancing the absorption properties in the entire band remains a challenge.In this work,a 3D porous pyrolytic carbon(PyC)foam matrix was synthesized by a template method.Amorphous carbon nanotubes(CNTs)were then in-situ grown on the matrix surface to obtain ultralight CNTs/Py C foam.These in-situ grown amorphous CNTs were distributed uniformly and controlled by the catalytic growth time and can enhance the interface polarization and conduction loss of composites.When the electromagnetic wave enters the internal holes,the electromagnetic energy can be completely attenuated under the combined action of polarization,conductivity loss,and multiple reflections.The ultralight CNTs/Py C foam had a density of 22.0 mg·cm^(-3)and a reflection coefficient lower than-13.3 d B in the whole X-band(8.2-12.4 GHz),which is better than the conventional standard of effective absorption bandwidth(≤-10 dB).The results provide ideas for researching ultralight and strong electromagnetic wave absorbing materials in the X-band. 展开更多
关键词 ultralight carbon foam amorphous carbon nanotubes broadband electromagnetic absorption
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Lightweight broadband microwave absorbing metamaterial with CB-ABS composites fabricated by 3D printing
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作者 陈孟州 汪刘应 +3 位作者 刘顾 葛超群 李涤尘 梁庆宣 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第4期691-695,共5页
The self-similarity,high geometric symmetry and spatial utilization properties of fractal structures provide new methods for the development of absorbing metamaterials.In this paper,the microwave absorption properties... The self-similarity,high geometric symmetry and spatial utilization properties of fractal structures provide new methods for the development of absorbing metamaterials.In this paper,the microwave absorption properties of the gradient dendritic fractal metamaterial structure(GDFMs)based on carbon black and acrylonitrile-butadiene-styrene composites were investigated.The optimal metamaterial structure has an effective absorption in the frequency range of 4.5-40 GHz.The rotational-symmetry GDFMs leads to the polarization independence,and the GDFMs exhibits a wide-angle absorption performance for both TE and TM waves.It is expected that the proposed GDFMs has good application prospects in electromagnetic wave absorption. 展开更多
关键词 additive manufacturing broadband absorbing polarization and angle independence gradient dendritic fractal structure
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A fast-response self-powered UV–Vis–NIR broadband photodetector based on a AgIn_(5)Se_(8)/t-Se heterojunction
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作者 李康 许磊 +1 位作者 陆启东 胡鹏 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第11期134-139,共6页
A type Ⅱ p–n heterojunction could improve the photodetection performance of a photodetector due to the excellent ability of carrier separation. N-type AgIn_(5)Se_(8)(AIS) exhibits a large optical absorption coeffici... A type Ⅱ p–n heterojunction could improve the photodetection performance of a photodetector due to the excellent ability of carrier separation. N-type AgIn_(5)Se_(8)(AIS) exhibits a large optical absorption coefficient, high optical conductivity and a suitable bandgap, and shows potential application in broadband photodetection. Even though our previous study on AgIn_(5)Se_(8)/FePSe_(3)obtained a good response speed, it still gave low responsivity due to the poor quality of the p-type FePSe_(3)thin film. Se, with a direct bandgap(around 1.7 eV), p-type conductivity, high electron mobility and high carrier density,is likely to form a low-dimensional structure, which leads to an increase in the effective contact area of the heterojunction and further improves the photodetector performance. In this work, continuous and dense t-Se thin film was prepared by electrochemical deposition. The self-powered AgIn5Se8/t-Se heterojunction photodetector exhibited a broadband detection range from 365 nm to 1200 nm. The responsivity and detectivity of the heterojunction photodetector were 32 μA/W and 1.8×109Jones, respectively, which are around 9 and 4 times higher than those of the AgIn_(5)Se_(8)/FePSe_(3)heterojunction photodetector. The main reason for this is the good quality of the t-Se thin film and the formation of the low-dimensional t-Se nanoribbons, which optimized the transport pathway of carriers. The results indicate that the AgIn_(5)Se_(8)/t-Se heterojunction is an excellent candidate for broadband and self-powered photoelectronic devices. 展开更多
关键词 AgIns Seg/t-Se heterojunction self-power broadband photodetector
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Broadband ground motion simulation using a hybrid approach of the May 21, 2021 M7.4 earthquake in Maduo, Qinghai, China
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作者 Yijun Liu Xiaofen Zhao +4 位作者 Zengping Wen Jie Liu Bo Chen Chunyao Bu Chao Xu 《Earthquake Science》 2023年第3期175-199,共25页
In this study,the broadband ground motions of the 2021 M7.4 Maduo earthquake were simulated to overcome the scarcity of ground motion recordings and the low resolution of macroseismic intensity map in sparsely populat... In this study,the broadband ground motions of the 2021 M7.4 Maduo earthquake were simulated to overcome the scarcity of ground motion recordings and the low resolution of macroseismic intensity map in sparsely populated high-altitude regions.The simulation was conducted with a hybrid methodology,combining a stochastic high-frequency simulation with a low-frequency ground motion simulation,from the regional 1-D velocity structure model and the Wang WM et al.(2022)source rupture model,respectively.We found that the three-component waveforms simulated for specific stations matched the waveforms recorded at those stations,in terms of amplitude,duration,and frequency content.The validation results demonstrate the ability of the hybrid simulation method to reproduce the main characteristics of the observed ground motions for the 2021 Maduo earthquake over a broad frequency range.Our simulations suggest that the official map of macroseismic intensity tends to overestimate shaking by one intensity unit.Comparisons of simulations with empirical ground motion models indicate generally good consistency between the simulated and empirically predicted intensity measures.The high-frequency components of ground motions were found to be more prominent,while the low-frequency components were not,which is unexpected for large earthquakes.Our simulations provide valuable insight into the effects of source complexity on the level and variability of the resulting ground motions.The acceleration and velocity time histories and corresponding response spectra were provided for selected representative sites where no records were available.The simulated results have important implications for evaluating the performance of engineering structures in the epicentral regions of this earthquake and for estimating seismic hazards in the Tibetan regions where no strong ground motion records are available for large earthquakes. 展开更多
关键词 Maduo earthquake hybrid broadband simulation source rupture model path model macroseismic intensity
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A Miniaturized Broadband Wilkinson Power Divider Using Micro-Strip Branch Lines
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作者 Taifu Zhou 《Journal of Computer and Communications》 2023年第12期102-108,共7页
A miniaturized broadband Wilkinson power divider is proposed. Micro-strip branch lines are introduced to replace multiple resistors used in multi-stage Wilkinson power dividers to increase the bandwidth of single-stag... A miniaturized broadband Wilkinson power divider is proposed. Micro-strip branch lines are introduced to replace multiple resistors used in multi-stage Wilkinson power dividers to increase the bandwidth of single-stage Wilkinson power dividers. To demonstrate its performance, an improved single-stage Wilkinson power divider with four micro-strip branch lines was designed. Simulated results show that the insert loss is better than 3.2 dB, the input return loss, output return loss, and isolation are better than 15 dB respectively, across a 76% bandwidth from 18 to 40 GHz. . 展开更多
关键词 broadband Micro-Strip Branch Lines Power Divider
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数字经济与城市旅游绩效研究--基于城市面板数据的实证分析 被引量:1
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作者 黄细嘉 《企业经济》 北大核心 2024年第2期5-16,F0002,共13页
旅游产业高质量发展对推进中国式现代化具有重要作用。本文利用中国城市面板数据,实证分析数字经济对城市旅游绩效的影响。研究发现:数字经济发展可以显著提高城市旅游绩效,具体表现为数字经济发展水平越高,则该城市的人均旅游总收入和... 旅游产业高质量发展对推进中国式现代化具有重要作用。本文利用中国城市面板数据,实证分析数字经济对城市旅游绩效的影响。研究发现:数字经济发展可以显著提高城市旅游绩效,具体表现为数字经济发展水平越高,则该城市的人均旅游总收入和人均旅游接待总人次越多,该结论在运用工具变量和选用“宽带中国”试点作为准自然实验缓解潜在的内生性问题后仍然稳健。异质性检验显示:在金融发展较落后地区和市场化进程较缓慢地区,数字经济对城市旅游绩效的促进作用更加显著。据此,本文提出充分利用数字经济赋能旅游经济、政府主导制定差异化产业政策、加强数字与旅游政策协同的政策建议。 展开更多
关键词 数字经济 旅游绩效 宽带中国
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基于InSe/MoTe_(2)异质结构的超灵敏宽光谱光电探测器
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作者 邢艳辉 贺雯馨 +8 位作者 韩梓硕 关宝璐 马海鑫 马晓辉 韩军 时文华 张宝顺 吕伟明 曾中明 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2024年第3期314-321,共8页
基于光栅效应的二维材料垂直结构可实现高灵敏度和宽光谱光探测器。本文报告了一种基于硒化铟(InSe)/二碲化钼(MoTe_(2))垂直异质结构的高灵敏度光电探测器,该探测器在365~965 nm波长范围内具有出色的宽光谱探测能力。顶层的InSe用作调... 基于光栅效应的二维材料垂直结构可实现高灵敏度和宽光谱光探测器。本文报告了一种基于硒化铟(InSe)/二碲化钼(MoTe_(2))垂直异质结构的高灵敏度光电探测器,该探测器在365~965 nm波长范围内具有出色的宽光谱探测能力。顶层的InSe用作调节沟道电流的光栅层,MoTe_(2)则用作传输层。通过结合两种材料的优势,该光电探测器的响应时间为21.6 ms,比探测率在365 nm光照下可以达到1.05×10^(13)Jones,在965 nm光照下也可达到109 Jones数量级。外量子效率可达1.03×10^(5)%,显示出强大的光电转换能力。 展开更多
关键词 二维材料 宽带光电探测器 光栅效应 超灵敏
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棉-粮-油菜宽带轮作提升作物产量和光能利用率
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作者 董明 张谦 +5 位作者 王燕 王树林 冯国艺 梁青龙 祁虹 赵贵元 《中国生态农业学报(中英文)》 CAS CSCD 北大核心 2024年第7期1159-1169,共11页
棉-粮-油菜宽带轮作种植模式,能够充分利用农田资源,但种植体系内不同作物光能资源利用特性尚不明确。本研究在田间设置棉花单作(对照)、小麦-玉米一年两熟(对照)和棉花-小麦-玉米-油菜宽带轮作(以下简称“宽带轮作”) 3种种植模式,测... 棉-粮-油菜宽带轮作种植模式,能够充分利用农田资源,但种植体系内不同作物光能资源利用特性尚不明确。本研究在田间设置棉花单作(对照)、小麦-玉米一年两熟(对照)和棉花-小麦-玉米-油菜宽带轮作(以下简称“宽带轮作”) 3种种植模式,测定棉花、玉米和小麦的产量、地上部干物质重以及叶面积指数、消光系数、光能截获量等指标。结果表明,与棉花单作比较,棉花宽带轮作单位面积产量和地上部干物重分别显著增加15.20%和10.35%。与小麦-玉米一年两熟比较,玉米和小麦宽带轮作的单位面积产量分别显著增加21.61%和11.53%,玉米地上部干物质重显著增加6.17%。7月16日(盛花期)至9月13日(吐絮期),棉花宽带轮作叶面积指数比棉花单作显著增加7.21%~12.76%, 7月24日(盛花期)和8月4日(盛铃期),棉花宽带轮作光能截获率比棉花单作分别显著降低3.59%和3.24%。玉米和小麦宽带轮作的叶面积指数、消光系数和光能截获率未发生显著变化。与棉花单作、小麦-玉米一年两熟比较,棉花宽带轮作和玉米宽带轮作的全生育期光能截获量分别显著降低3.14%和显著增加0.76%,小麦宽带轮作的全生育期光能截获量未发生显著变化,棉花、玉米和小麦的光能利用率分别显著增加18.81%、6.76%和14.10%。本试验条件下,边行优势和轮作效应同时发挥作用增加了棉花、玉米和小麦的单位面积产量以及棉花和玉米的地上部干物质重,改善作物干物质的积累和分配,进而提升棉花、玉米和小麦的光能利用率。该研究明确了棉-粮-油菜宽带轮作对作物产量和冠层光能利用率的影响,可为该模式的推广应用提供理论基础。 展开更多
关键词 棉花 玉米 小麦 宽带轮作 产量 光能利用
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基于CMOS的高响应度太赫兹探测器线阵
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作者 白雪 张子宇 +2 位作者 徐雷钧 赵心可 范小龙 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2024年第1期70-78,共9页
本文提出了一种基于CMOS 0.18μm工艺的改进型高响应度太赫兹探测器线阵,各探测像素单元由高增益片上天线、高耦合度差分自混频功率探测电路和集成电压放大器组成。其中,差分探测电路利用源极差分驱动场效应管的交叉耦合电容,将太赫兹... 本文提出了一种基于CMOS 0.18μm工艺的改进型高响应度太赫兹探测器线阵,各探测像素单元由高增益片上天线、高耦合度差分自混频功率探测电路和集成电压放大器组成。其中,差分探测电路利用源极差分驱动场效应管的交叉耦合电容,将太赫兹差分信号耦合至场效应管的栅极与源极,增强场效应管沟道内自混频太赫兹信号的强度,实现高响应度。其次,该探测器配备高增益片上环形差分天线与集成电压放大器,可有效放大混频后的信号,进而提高系统信噪比,最终达到增强探测器响应度的目的。探测器1×3线阵系统充分利用CMOS工艺多层结构的特点,将电压放大器布置在天线地平面下方,提高了芯片面积的利用率,有效降低了制作成本,整个系统的面积为0.5 mm^(2)。测试结果表明,当场效应管的栅极偏置为0.42 V时,该探测系统对0.3 THz辐射信号的电压响应度(Rv)最大可达到43.8 kV/W,对应的最小噪声等效功率(NEP)为20.5 pW/Hz^(1/2)。动态测试结果显示该探测器可对不同材质的隔挡物进行区分。 展开更多
关键词 互补金属氧化物半导体 太赫兹 探测器 宽带天线 高响应度
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基于多层石墨烯-黑磷结构可调谐各向异性吸收器
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作者 肖功利 赖子凡 +3 位作者 杨宏艳 林志雄 李海鸥 陈赞辉 《半导体光电》 CAS 北大核心 2024年第3期362-368,共7页
基于阻抗匹配理论(IMT)和多层局域表面等离子体共振(LSPR)耦合效应,设计了一种多层石墨烯-黑磷可调谐各向异性吸收器。通过采用时域有限差分法(FDTD)进行模拟仿真计算分析发现,TE偏振下,吸收器在波长20.8~45.34μm范围内可实现94%的宽... 基于阻抗匹配理论(IMT)和多层局域表面等离子体共振(LSPR)耦合效应,设计了一种多层石墨烯-黑磷可调谐各向异性吸收器。通过采用时域有限差分法(FDTD)进行模拟仿真计算分析发现,TE偏振下,吸收器在波长20.8~45.34μm范围内可实现94%的宽带平均吸收;TM偏振下,在波长16.6~44.6μm范围内可以实现96.3%的宽带平均吸收,呈现出一定程度的各向异性吸收特性。此外,通过调整石墨烯-黑磷块的宽度,可以调节吸收带宽。同时,动态调节石墨烯的费米能级或黑磷的电子掺杂浓度也能够调节吸收带宽和平均吸收率。该研究成果对动态可调谐红外能量采集、偏振选择性吸收和红外伪装领域具有理论指导意义。 展开更多
关键词 超材料 超宽带 可调谐 各向异性 石墨烯 黑磷
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基于双层VO_(2)的可调谐宽带太赫兹超材料吸收器
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作者 董亮 向环琦 朱磊 《太赫兹科学与电子信息学报》 2024年第7期695-702,共8页
基于VO_(2)的相变特性,提出一种具有宽带特性的太赫兹超材料吸收器,包括2层VO_(2)图案、2层聚酰亚胺介电层和1层金属反射层,共5层结构。对吸收器的吸收特性、电场分布和可调谐特性进行仿真分析,结果表明,所设计的吸收器吸收率大于90%的... 基于VO_(2)的相变特性,提出一种具有宽带特性的太赫兹超材料吸收器,包括2层VO_(2)图案、2层聚酰亚胺介电层和1层金属反射层,共5层结构。对吸收器的吸收特性、电场分布和可调谐特性进行仿真分析,结果表明,所设计的吸收器吸收率大于90%的带宽为2.56 THz。该吸收器将2层结构相同但尺寸不同的周期单元堆叠,有效扩展了带宽;且通过控制VO_(2)从绝缘态到金属态的相变,可以实现吸收率的连续调谐。通过研究不同偏振角及入射角条件下所设计超材料吸收器的吸收性能发现,该吸收器具有偏振无关、在较大入射角入射时吸收不敏感特性。所设计的吸收器有望在太赫兹通信、成像和探测器等领域得到广泛应用。 展开更多
关键词 太赫兹 超材料吸收器 可调谐 宽频带
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