人物簡介
張 澤,中國科學院空天信息研究院研究員,173計畫項目總負責人,獲北京市自然科學二等獎一項,主持173重點、H863、國家自然科學基金面上、聯合基金、科工局專項、裝發聯合基金重大項目1項,主要從事光電極限探測、雷射抗大氣湍流傳輸等方面的研究工作,發表SCI論文和發明專利30餘篇。
研究方向
雷射束抗大氣湍流傳輸
光學極限探測與智慧型感測技術
智慧型光電感測與標校等
教育經歷
2010-10--2011-11 美國中佛羅里達大學 訪問學者
2009-09--2013-04 哈爾濱工業大學博士
2005-07--2008-07 北京師範大學 碩士
2001-09--2005-07 河南大學 學士
工作經歷
2020.12-今 中國科學院空天信息創新研究院 研究員
2015.12-2020.12 中國科學院空天信息創新研究院 副研究員
2013.06-2015.12 中國科學院光電研究院 助理研究員
2008.07-2009.07 北京理工大學附中 教師
社會任職
2020.12.01-今, 北京郵電大學兼職教授
2020.07.01-今, 中國地質大學兼職教授
科研項目
(1)173重點項目 項目負責人 國家任務 2020.11—2024.06
(2)H863重點項目 項目負責人 國家任務 2017.12—2020.12
(3)國家自然科學基金面上項目 項目負責人 國家任務 2014.08—2018.08
(4)科技部重點研發計畫 課題負責人 國家任務 2019.10—2023.12
(5)173重點項目 課題負責人 國家任務 2021.08—2024.12
(6)173重點項目 課題負責人 國家任務 2023.06—2026.06
(7)民航項目 課題負責人 國家任務 2022-09—2024.09
(8)國家自然科學基金面上項目 課題負責人 國家任務 2021.01—2024.12
(9)國家高分專項數據處理課題負責人 國家任務 2019.11—2020.11
(10)國家高分專項雷射雷達 課題負責人 國家任務 2020.06—2021.06
代表論著
[1]Xue, Hemeng, Mingtao Shang, Ze Zhang*, Hongfei Yu, Jinchao Liang, Meiling Guan, Chengming Sun, Huahua Wang, Shufeng Wang, Zhengyu Ye, Feng Gao and Lu Gao. “Hyper‐Sampling Imaging by Measurement of Intra‐Pixel Quantum Efficiency Using Steady Wave Field.” Laser & Photonics Reviews (2024).
[2]Hao Zhang, Xingwang Kang, Yang Liu, Meiling Guan, Qin Wen, Xinglin Zhong, Huahua Wang, Jian Wu, Lu Gao, Ze Zhang*. Plane Wavefront Distortion and Its Effect on Laser Coherent Synthesis Efficiency (Invited)[J]. Laser & Optoelectronics Progress, 2024, 61(7): 0706009.
[3]Xinglin Zhong,Xingwang Kang,Yang Liu,Xiuting Yang,Wei Liu,Xinli Liang,Jian Ma,Huahua Wang,Haoran Du,Hao Zhang,Hongxiang Guo,Jifang Qiu,Jian Wu,Qin Wen,Lu Gao,Ze Zhang*.Optimization design of steady optical pin beam using genetic algorithm[J],Optics and Lasers in Engineering.2023, 168,107680.
[4]Zhang, Hao, Xing Wang Kang, Yang Liu, Wei Liu, Xinglin Zhong, Huahua Wang, Haoran Du, Xinli Liang, Jian Wu, Lu Gao and Ze Zhang*. Wave Front Deviation from Plane Wave and its Effect on Laser Coherent Combination.SSRN Electronic Journal (2023).
[5]Li, Denghui, Bongiovanni, Domenico, Goutsoulas, Michael, Xia, Shiqi, Zhang, Ze*. Direct comparison of anti-diffracting optical pin beams and abruptly autofocusing beams. OSA CONTINUUM[J], 2020, 3(6): 1525-1535.
[6]Yang, Xiuting, Zhang, Ze, Ren, Yuhang, Liang, Xinli, Chen, Yan. Propagation of optical pin beams through water turbulence. INTERNATIONAL CONFERENCE ON OPTOELECTRONIC AND MICROELECTRONIC TECHNOLOGY AND APPLICATION, 2020, 11617.
[7]Zhang Ze, Liang Xinli, Goutsoulas Mihalis, Efremidis Nikos, Chen Zhigang, IEEE. Demonstration of turbulence-resistant propagation of anti-diffracting optical beams beyond kilometer distances. 2019 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2019.
[8] Zhang, Ze, Liang, Xinli, Goutsoulas, Mihalis, Li, Denghui, Yang, Xiuting. Robust propagation of pin-like optical beam through atmospheric turbulence. APL PHOTONICS[J], 2019, 4(7).
[9]Liang, Xinli, Zhang, Ze, Li, Deng, Han, Xiaofang, Gao, Feng. Curved volume waveguides induced by Airy beams in negative polarizability nanosuspensions. OPTICS COMMUNICATIONS[J], 2019, 437: 90-94.
[10]Na Yan, Xiaofang Han, Pengfa Chang, Ligang Huang, Feng Gao, Xuanyi Yu, Wending Zhang, Ze Zhang, Guoquan Zhang, and Jingjun Xu Tunable dual-wavelength fiber laser with unique gain system based on in-fiber acousto-optic Mach-Zehnder interferometer. OPTICS EXPRESS[J], 2017, 25(22): 27609-27615.
[11]Xiong, ShengJun, Bin Xiangli, He, Yang, Zhang, Ze. Image reconstruction method based on CCD calibration in frequency domain. APPLIED OPTICS[J], 2015, 54(14): 4561-4565.
[12]Zhao, Juanying, Chremmos, I D, Zhang, Ze, Hu, Yi, Song, Daohong. Specially shaped Bessel-like self-accelerating beams along predesigned trajectories. SCIENCE BULLETIN[J], 2015, 60(13): 1157-1169. http://dx.doi.org/10.1007/S11434-015-0792-1.
[13]Zhao JuanYing, Deng DongMei, Zhang Ze, Liu JingJiao, Jiang DongSheng. Theoretical and experimental study on self-accelerating Bessel-like Hermite-Gaussian beams. ACTA PHYSICA SINICA[J], 2014, 63(4).
[14]Zhang, Ze, Zhang, Peng, Mills, Matthew, Chen, Zhigang, Christodoulides, D N. Trapping aerosols with optical bottle arrays generated through a superposition of multiple Airy beams. CHINESE OPTICS LETTERS[J], 2013, 11(3).
[15]Man, Weining, Fardad, Shima, Zhang, Ze, Prakash, Jai, Lau, Michael. Optical Nonlinearities and Enhanced Light Transmission in Soft-Matter Systems with Tunable Polarizabilities. PHYSICAL REVIEW LETTERS[J], 2013, 111(21).
[16]張澤, 胡毅, 趙娟瑩, 張鵬, 陳志剛 . 艾里光束研究進展與套用前景 . 科學通報[J] , 2013 , 58(34) : 3513-3520.
[17]Zhang Ze, Liu JingJiao, Zhang Peng, Ni PeiGen, Jai, Prakash, Hu Yang, Jiang DongSheng, Demetrios, Christodoulides N. Generation of autofocusing beams with multi-Airy beams. ACTA PHYSICA SINICA[J], 2013, 62(3).
[18]Zhang, Ze, Ye, Zhuoyi, Song, Daohong, Zhang, Peng, Chen, Zhigang. Repositioning and steering laser beam power via coherent combination of multiple Airy beams. APPLIED OPTICS[J], 2013, 52(35): 8512-8517.
[19]Zhang, Ze, Cannan, Drake, Liu, Jingjiao, Zhang, Peng, Christodoulides, Demetrios N. Observation of trapping and transporting air-borne absorbing particles with a single optical beam. OPTICS EXPRESS[J], 2012, 20(15): 16212-16217.
[20]Peng Zhang, Ze Zhang. Trapping and Transporting Aerosols with a Single Optical Bottle Beam Generated by Moiré Techniques . Optics Letters, 2011.
[21]Zhang, Peng, Prakash, Jai, Zhang, Ze, Mills, Matthew S, Efremidis, Nikolaos K. Trapping and guiding microparticles with morphing autofocusing Airy beams. OPTICS LETTERS[J], 2011, 36(15): 2883-2885.
所獲榮譽
相關報導
2024年11月,空天院張澤研究員團隊首次實現像素“分割”成像,成功開發出超採樣成像技術。該技術能夠顯著提升圖像感測器的像素解析度和成像質量。相關研究成果發表於《雷射與光子學評論》雜誌。