Contents
2021
Volume: 50 Issue 1
34 Article(s)

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Research progress in optical field regulation mechanism and optical devices based on non-Hermitian and topological effects (Invited)
Shiling Yan, Xueyi Zhu, Hongfei Wang, Biye Xie, Xiujuan Zhang, Minghui Lu, Peng Zhan, Lijian Zhang, and Hong Lu
Optical transmission and regulation is an important basis for the development of photonic integrated devices. As a new optical functional material, photonic crystals have great potential in optical manipulation. Inspired by the concept of topological phase in condensed matter physics, the introduction of topological ph
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211001 (2021)
Quantum well infrared detector enhanced by local light field (Invited)
Chang Liu, Jian Wang, Xuan Zuo, and Dayuan Xiong
Quantum well infrared photodetectors (QWIPs) has been considered as another excellent candidate in long-wavelength and very-long-wavelength infrared detection. It shows more distinctive advantages than the traditional HgCdTe technology in long-wave infrared detection, multi-color detection and focal plane technology ar
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211009 (2021)
Progress of surface plasmon nanostructure enhanced photodetector (Invited)
Weidi He, Dan Su, Shanjiang Wang, Huanli Zhou, Wen Chen, Xiaoyang Zhang, Ning Zhao, and Tong Zhang
As one of the core devices in the field of aeronautic and astronautics, deep space exploration, environmental monitoring, there is significant scientific research and practical application value for photodetector. In recent years, surface plasmon has become one of the research hotspots in the field of enhanced photodet
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211014 (2021)
Development of terahertz detectors with low dimensional materials (Invited)
Zhaoguo Liu, Huanli Zhou, Weidi He, Ning Zhao, and Tong Zhang
Terahertz technology has broad application prospects in non-destructive testing, biomedicine, industrial inspection, environmental monitoring, local area communications and national defense security. The terahertz detector in the terahertz system is its core component. Its performance determines the application market
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211015 (2021)
Frontier Technology of Infrared Photodetector $ Avalanche Amplified Infrared Single Photon Detector Manipulated by Optical Field
Research progress of artificial microstructure thin layer infrared detector (Invited)
Jiayuan Du, Xinyu Zhao, and Xinhua Hu
The thin layer of infrared detection material guarantees the uniformity of the materials and reduces the signal noise in infrared detection. The absorption of infrared detector is limited by the thin layer of infrared detection material attributing to small volume. According to the characteristics of different infrared
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211002 (2021)
Research progress of broadband achromatic infrared metalens (Invited)
Kai Ou, Feilong Yu, Jin Chen, Guanhai Li, and Xiaoshuang Chen
Metalenses are two-dimensional metasurfaces composed of sub-wavelength scatters with planar configuration and light focusing function. They can manipulate the amplitude, phase, dispersion and polarization of the light field at sub-wavelength spatial resolution, and develop rapidly in recent years. The subwavelength res
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211003 (2021)
Development of silicon single photon detector and its application in high-precision satellite-to-ground time comparison (Invited)
Qiaoli Liu, Chang Liu, Yitong Wang, Lingxiang Hao, Yongqing Huang, Anqi Hu, and Xia Guo
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211004 (2021)
Broadband achromatic imaging with metalens (Invited)
Haoran Mo, Zitao Ji, Yidong Zheng, Wenyao Liang, Huakang Yu, and Zhiyuan Li
Metalens, the specific type of lens designed with the surfaces mading of two dimensional array at the subwavelength scale, has shown great flexibilities to control the light field, including the arbitrary modulation abilities of amplitude, phase and polarization at the subwavelength scale. Moreover, the metalens posses
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211005 (2021)
Frontier Technology of Infrared Photodetector $ Materials and Devices for Low-Dimensional Infrared Detection
Recent advances in semiconductor nanowires infrared photodetectors (Invited)
Yanan Guo, Dong Liu, Chengcheng Miao, Jiamin Sun, and Zai-xing Yang
In recent years, infrared photodetectors have attracted increasing interest due to their promising applications in both military and civil areas. To further realize room-temperature, wide-spectrum, high-sensitivity, fast-response and low-power consumption infrared photodetectors, low-dimension semiconductors are consid
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211010 (2021)
Research progress of infrared single-photon detection with high gain (Invited)
Jingyuan Wu, Zhaoguo Liu, and Tong Zhang
Ultra-sensitive single-photon detection is a key technology for the development of optical quantum information and quantum manipulation. It is of important scientific significance and application value to realize high-efficiency, high-sensitivity, low-power and low-cost single-photon photodetectors. There is still a la
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211016 (2021)
Research progress of two-dimensional semiconductor infrared photodetector (Invited)
Hangyu Xu, Peng Wang, Xiaoshuang Chen, and Weida Hu
Infrared detection plays an important role in cutting-edge fields such as biomedicine, smart cities, and space exploration. In recent years, a new type of nanoscale semiconductor represented by two-dimensional materials is one of the candidates for a new generation of infrared photodetection technology. This is due to
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211017 (2021)
Research progress of two-dimensional layered materials-based heterojunction photodetectors(Invited)
Hongfu Chen, Man Luo, Niming Shen, Tengfei Xu, Jiayi Qin, Weida Hu, Xiaoshuang Chen, and Chenhui Yu
Since the era of graphene, two-dimensional layered materials (2DLMs) with distinctive physical, chemical and optoelectronic properties have attracted extensive attention from researchers worldwide. Benefiting from the diversity of material composition and the layer number dependence of their bandgap, the spectral respo
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211018 (2021)
Preparation, structure and properties of tin telluride and its research progress in infrared photodetection (Invited)
Liyuan Song, Libin Tang, and Qun Hao
As Ⅳ-Ⅵ compound, tin telluride belongs to direct band gap semiconductor materials. Under the condition of room temperature and atmospheric pressure, tin telluride has a stable face-centered cubic crystal structure. Being a topological crystal insulator, tin telluride has a highly symmetrical crystal structure. Due to i
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211019 (2021)
Recent progress of GaN based quantum well infrared photodetector (Invited)
Feng Wu, Jiangnan Dai, Changqing Chen, Jintong Xu, and Weida Hu
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211020 (2021)
CoTe2 QDs: preparation, structure and optical properties (Invited)
Bin Li, Xingfan Chen, Jing Liang, Xueming Li, Libin Tang, and Peizhi Yang
In recent years, transition metal telluride (TMTs) has attracted extensive attention and research in the scientific field due to its unique crystal structure and excellent physical and chemical properties. In this paper, CoTe2 quantum dots (QDs) was prepared by ultrasonic method, the morphology and structure of the pre
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211021 (2021)
Frontier Technology of Infrared Photodetector $ Materials and Devices for Multi-Mode Infrared Detection
Plasmonic microcavity coupled high extinction ratio polarimetric long wavelength quantum well infrared photodetectors(Invited)
Zhifeng Li, Qian Li, Youliang Jing, Yuwei Zhou, Jing Zhou, Pingping Chen, Xiaohao Zhou, Ning Li, Xiaoshuang Chen, and Wei Lu
The long wavelength infrared polarimetric detector can greatly improve the recognition ability of thermal imaging. Owing to the physical limitation of the diffraction limit, the polarization extinction ratio of the current micro-grid polarizer-type long wavelength infrared polarimetric detectors can basically only be a
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211006 (2021)
Fundamental researches on the quantum well interband transition detector(Invited)
Chen Yue, Haojun Yang, Haiyan Wu, Yangfeng Li, Ling Sun, Zhen Deng, Chunhua Du, Yang Jiang, Ziguang Ma, Wenxin Wang, Haiqiang Jia, and Hong Chen
Recently, the anomalous carrier transport in the quantum wells with the PN junction structures has been found experimentally, and the corresponding physical mechanism and the carrier transport model have been proposed. It is observed that the open circuit voltage or short-circuit current can be measured in the resonant
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211007 (2021)
Progress on the study of two-dimensional material self-driven photoresponse enhancement by asymmetrically integrated plasmonic nanostructures (Invited)
Shangkun Guo, Jie Deng, Jing Zhou, Donghai Zhang, Yu Yu, Jia'nan Deng, Qingyuan Cai, Zhifeng Li, Wei Lu, and Xiaoshuang Chen
Metal-2D material-metal photodetectors is the most common type of 2D material photodetectors. Due to the simple structure and the ease of integration with other systems, metal-2D material-metal photodetectors have received the widest range of attentions and research interest. The self-driven mode of this type of photod
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211011 (2021)
Multiband fusion detection based on superstructure/ blocking-impurity-band combination detector (Invited)
Huiyuan Cui, Yulu Chen, and Xiaodong Wang
Terahertz radiation refers to electromagnetic waves with a wavelength range of 30 μm-1 mm, characterized by strong penetration, high safety, strong specificity and good orientation. Therefore, terahertz technology has broad application prospects in the fields of astronomical observation, safety monitoring, substance id
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211012 (2021)
Research progress of uncooled infrared detectors(Invited)
Lijing Yu, Libin Tang, Wenyun Yang, and Qun Hao
Uncooled infrared detectors are widely used in the infrared field due to their low cost, small size, and low power consumption because they do not need the cooling device and can work at room temperature. In military application field, the uncooled detector has gradually entered the application domain of previous refri
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20211013 (2021)
Image Processing
Edge area constraint guided filter depth image super-resolution reconstruction algorithm
Jun'an Wu, Rui Guo, Rongzhong Liu, Zungui Ke, and Xu Zhao
A super-resolution reconstruction method was proposed to solve the edge blurring and texture copying in the depth map from the super-resolution process when using guided filter. The proposed method was based on the guide filter and high-resolution grey image’s edge feature-constrained. Firstly, up-sampling the low reso
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200081 (2021)
Anti-occlusion real time target tracking algorithm employing spatio-temporal context
Faling Chen, Qinghai Ding, Haibo Luo, Bin Hui, Zheng Chang, and Yunpeng Liu
An anti-occlusion real time target tracking algorithm employing spatio-temporal context was proposed to solve the problems of tracking instability or even failure, which were caused by illumination variation, background clutters, target deformation or occlusion. Firstly, in the framework of spatio-temporal context mode
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200105 (2021)
Lasers & Laser Optics
Influence of bending on transverse mode instability of large mode area fiber
Gang Bai, Yantao Dong, Daqing Zhang, Kunyu Tao, Hui Shen, Yunfeng Qi, Bing He, and Jun Zhou
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200028 (2021)
1 123 nm passively Q-switched Nd: YAG laser based on gold nanocages and MoS2 saturable absorbers
Bin Zhang, Ying Li, and Binghai Liu
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200084 (2021)
Development of beam brightness enhancement based on diamond Raman conversion
Zhenxu Bai, Hui Chen, Yuqi Li, Xuezong Yang, Yaoyao Qi, Jie Ding, Yulei Wang, and Zhiwei Lv
High brightness laser sources with different wavelengths play an important role in the fields such as defense, industrial, and life sciences etc. However, due to the intrinsic spectral and thermophysical properties of current available laser gain materials, it is difficult to take into account the wavelength and output
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200098 (2021)
Study on spectral encoded computational ghost imaging
Jian Huang, Dongfeng Shi, Wenwen Meng, Linbin Zha, Yusong Sun, Ke'e Yuan, Shunxing Hu, and Yingjian Wang
The existing multispectral imaging technologies usually utilize optical spectroscopy and multiple detectors to capture spectral images. These techniques suffer from complexity, a large amount of data and low efficiency. Addressing these deficiencies, in this paper, a spectral encoded computational ghost imaging technol
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200120 (2021)
LIBS experimental study of eliminating the interference of Al element in soil base based on background subtraction method
Honglian Li, Hongbao Wang, Shasha Kang, Lide Fang, and Xiaoting Li
The pollution of heavy metals in the soil has seriously affected agriculture and food safety. Therefore, efficient and accurate detection of heavy metal pollution is a problem that needs to be solved urgently. When using laser induced breakdown spectroscopy (LIBS) to quantitatively analyze the Ni element in the soil, i
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200136 (2021)
Technique of spectral enhancement under combined action of cavity and Au-NPs
Lili Zhang, and Yanwei Yang
Laser-induced breakdown spectroscopy (LIBS) is a material composition detection technology that has emerged in recent years with the development of laser technology and spectral detection technology. This technology has many advantages such as fast, non-destructive, simple operation, and no sample pretreatment , but th
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200137 (2021)
Optical Design
Optimization method for large-aperture space mirror’s gravity unload
Yixuan Sun, Shikui Luo, Chao Gao, Fang Chen, Xiaoying Zong, Jianxiang Du, Zijia Liu, and Jie Bai
A Φ1550 mm aperture space mirror’s surface figure RMS was required to be superior to 1/50λ (λ=632.8 nm) under the zero-gravity orbit environment. In order to simulate the state of weightlessness and reduce the influence of gravity in the mirror’s surface figure test with horizontal optic axis, the mirror was actively s
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200103 (2021)
Design of low altitude high resolution lidar optical system
Zhuang Liu, Chao Wang, Lun Jiang, and Haodong Shi
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200117 (2021)
Design of LED plant light source system with high spatial illumination uniformity
Feiyu Jiao, Shangsheng Wen, Bingxu Ma, Bo Zhang, Xinyu Jiang, Yunle Lu, Weizhao Huang, and Qibao Wu
The traditional plant lighting design only evaluates the uniformity of a single reference surface, and it is difficult to meet the light intensity and light quality requirements of different stages of plant growth. Aiming at this problem, first, a space lighting uniformity evaluation system was proposed, and based on t
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200119 (2021)
System integration and test of GF-7 bi-linear array stereo mapping sensing camera
Chongyang Li, Zhifei Zhang, Chong Lv, Yonghong Zhu, Zhifeng Bian, Chunrui Zhang, Rong Wang, Hui Liu, and Xiaohan Du
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200143 (2021)
Photoelectric Measurement
High-precision motion estimation for instability space targets
Riming Sun, Yichen Yang, Yongfeng Ma, Xiangyu Kong, and Changxian Li
Motion estimation is an effective way to rectify the distortion of linear array images of moving target in linear measurement system. However, the non-cooperation and motion complexity of instability space targets make it difficult to precisely estimate their motion parameters. In order to improve the estimation accura
Infrared and Laser Engineering
  • Publication Date: Jan. 25, 2021
  • Vol. 50, Issue 1, 20200104 (2021)