|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | A study of the construction and application of a Daubechies wavelet-based beam element显示文摘 | Junxing Ma Jijun Xue Shengjun Yang Zhengjia He | 2003 | Finite Elements in Analysis and Design2003,39,1: | 1 |
| 2 | A study of the construction and application of a Daubechies wavelet-based beam element 显示文摘 | Junxing Ma Jijun Xue Shengjun Yang Zhengjia He | 2003 | Finite Elements in Analysis and Design2003,39,10: | 1 |
| 3 | A study of the construction and application of a Daubechies wavelet- based beam element显示文摘 | MA Junxing XUE Jijun HE Zhengjia | 2003 | Finite Elements in Analysis and Design2003,39,10: | 1 |
| 4 | Hybrid bound states in the continuum in terahertz metasurfaces显示文摘Bound states in the continuum(BICs)have exhibited extraordinary properties in photonics for enhanced light-matter interactions that enable appealing applications in nonlinear optics,biosensors,and ultrafast optical switches.The most common strategy to apply BICs in a metasurface is by breaking symmetry of resonators in the uniform array that leaks the otherwise uncoupled mode to free space and exhibits an inverse quadratic relationship between quality factor(Q)and asymmetry.Here,we propose a scheme to further reduce scattering losses and improve the robustness of symmetry-protected BICs by decreasing the radiation density with a hybrid BIC lattice.We observe a significant increase of radiative Q in the hybrid lattice compared to the uniform lattice with a factor larger than 14.6.In the hybrid BIC lattice,modes are transferred toГpoint inherited from high symmetric X,Y,and M points in the Brillouin zone that reveal as multiple Fano resonances in the far field and would find applications in hyperspectral sensing.This work initiates a novel and generalized path toward reducing scattering losses and improving the robustness of BICs in terms of lattice engineering that would release the rigid requirements of fabrication accuracy and benefit applications of photonics and optoelectronic devices. | Junxing Fan Zuolong Li Zhanqiang Xue Hongyang Xing Dan Lu Guizhen Xu Jianqiang Gu Jiaguang Han Longqing Cong | 2023 | Opto-Electronic Science2023,2,4: | 1 |
| 5 | A comparative study on hydrocarbon detection using three EMI~based time-frequency analysis methods 显示文摘 | Yajuan Xue Junxing Cao Renfei Tian | 2013 | J ApplGeophys2013,89,: | 1 |
| 6 | A Study of the Construction and Application of a Daubechies Wavelet-based Beam Element显示文摘 | Ma Junxing Xue Jijun Yang Shengjun He Zhengjia | 2003 | Finite Elements in Analysis and Design (S0168-874X)2003,39,10: | 1 |
| 7 | Recent Advances and Perspective of Photonic Bound States in the Continuum显示文摘Recent advancements in photonic bound states in the continuum(BICs)have opened up exciting new possibilities for the design of optoelectronic devices with improved performance.In this perspective article,we provide an overview of recent progress in photonic BICs based on metamaterials and photonic crystals,focusing on both the underlying physics and their practical applications.The first part of this article introduces 2 different interpretations of BICs,based on far-field interference of multipoles and near-field analysis of topological charges.We then discuss recent research on manipulating the far-field radiation properties of BICs through engineering topological charges.The second part of the article summarizes recent developments in the applications of BICs,including chiral light and vortex beam generation,nonlinear optical frequency conversion,sensors,and nanolasers.Finally,we conclude with a discussion of the potential of photonic BICs to advance terahertz applications in areas such as generation and detection,modulation,sensing,and isolation.Webelieve that continued researchinthis area will lead to exciting new advancements in optoelectronics,particularly in the field of terahertz devices. | Guizhen Xu Hongyang Xing Zhanqiang Xue Dan Lu Jinying Fan Junxing Fan Perry Ping Shum Longqing Cong | 2023 | Ultrafast Science2023,3,5: | 0 |
| 8 | Nonlinear Finite Element Analysis of Paper Movement in Air显示文摘In order to improve the office poper feeder design, and eliminate paper jam .fault inrunning office equipment, the static deformation and dynamic response of paper were analyzedby use of the Fnite Element Method (FEM. In the analysis, the three nodes triangle plate andshell element were employed and finite element incremental formulations were derived on thebasis of Updated Ingragian (U.L.) description. The newmark method was used to analyze thetransient,rsponse of paper. All the,rsults calculated in this article coincide with those byexpenments. | Ma Junxing Yang Shengjun Xue Jijun and He Zhengiia (Department of Mechanical Engineering, Xi’an Jiaotong University, China) | 2000 | International Journal of Plant Engineering and Management2000,5,2: | 0 |
| 9 | Efficient Ship:A Hybrid Deep Learning Framework for Ship Detection in the River显示文摘Optical image-based ship detection can ensure the safety of ships and promote the orderly management of ships in offshore waters.Current deep learning researches on optical image-based ship detection mainly focus on improving one-stage detectors for real-time ship detection but sacrifices the accuracy of detection.To solve this problem,we present a hybrid ship detection framework which is named EfficientShip in this paper.The core parts of the EfficientShip are DLA-backboned object location(DBOL)and CascadeRCNN-guided object classification(CROC).The DBOL is responsible for finding potential ship objects,and the CROC is used to categorize the potential ship objects.We also design a pixel-spatial-level data augmentation(PSDA)to reduce the risk of detection model overfitting.We compare the proposed EfficientShip with state-of-the-art(SOTA)literature on a ship detection dataset called Seaships.Experiments show our ship detection framework achieves a result of 99.63%(mAP)at 45 fps,which is much better than 8 SOTA approaches on detection accuracy and can also meet the requirements of real-time application scenarios. | Huafeng Chen Junxing Xue Hanyun Wen Yurong Hu Yudong Zhang | 2024 | Computer Modeling in Engineering & Sciences2024,138,1: | 0 |