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程鑫彬,同济大学物理科学与工程学院教授、博士生导师,精密光学工程技术研究所所长,国家杰出青年基金获得者,获国家技术发明奖二等奖,获得中国专利金奖,激光薄膜技术实现成果转化。主要从事微纳智能感知、强激光器件和纳米计量方面的研究。承担国家重大科技专项、国家重点研发计划、国家自然科学基金等科研项目十余项,以第一/通讯作者发表Science Advances、Light: Science & Applications、Optica、等四十余篇文章。
起始时间 |
终止时间 |
项目名称 |
项目来源 |
主要贡献 |
2020.5 |
2024.12 |
强激光薄膜器件 |
国自然杰出青年基金 |
项目负责人 |
2020.11 |
2025.12 |
准三维亚波长结构分光元件的耦合杂化效应研究和跨波段高效率调控 |
国自然重大国际合作项目 |
项目负责人 |
2021.6 |
2022.12 |
现代光学应用中的光栅多层膜设计基础研究 |
国自然国际合作交流项目 |
项目负责人 |
2016.12 |
2021.6 |
纳米标准物质与标准样品的均一调控与计量定值(课题) |
国家重点研发计划 |
项目负责人 |
2017.10 |
2020.8 |
基于自溯源特性的纳米测量 |
上海市科委基础重大 |
项目负责人 |
2021.4 |
2023.9 |
光频超构表面的高效率调控与应用 |
上海市科委基础研究课题 |
项目负责人 |
2017.10 |
2020.12 |
超低损耗半导体薄膜基础理论与关键技术研究 |
上海市教委曙光 |
项目负责人 |
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg 起始时间 | 终止时间 | 项目名称 | 项目来源 | 主要贡献 |
2020.5 | 2024.12 | 强激光薄膜器件 | 国自然杰出青年基金 | 项目负责人 |
2020.11 | 2025.12 | 准三维亚波长结构分光元件的耦合杂化效应研究和跨波段高效率调控 | 国自然重大国际合作项目 | 项目负责人 |
2021.6 | 2022.12 | 现代光学应用中的光栅多层膜设计基础研究 | 国自然国际合作交流项目 | 项目负责人 |
2016.12 | 2021.6 | 纳米标准物质与标准样品的均一调控与计量定值(课题) | 国家重点研发计划 | 项目负责人 |
2017.10 | 2020.8 | 基于自溯源特性的纳米测量 | 上海市科委基础重大 | 项目负责人 |
2021.4 | 2023.9 | 光频超构表面的高效率调控与应用 | 上海市科委基础研究课题 | 项目负责人 |
2017.10 | 2020.12 | 超低损耗半导体薄膜基础理论与关键技术研究 | 上海市教委曙光 | 项目负责人 |
[1] J.Y.Zhu, S.L.Zhou, Y.Ning, X.Dun, S.Y.Dong*, Z.S.Wang, and X.B. Cheng*,Grayscale-patternedintegrated multilayer-metal-dielectric microcavities for on-chipmulti/hyperspectral imaging in the extended visible bandwidth, Optics Express31, 14027-14036 (2023)
[2] S.Y.Dong, Z.Y.Zhang, L.Y.Xie, J.Y.Zhu, H.G.Liang, Z.Y.Wei, Y.Z.Shi, A.V.Tikhonravov, Z.S. Wang, L. Zhou, and X.B.Cheng*,Broadbanddepolarized perfect Littrow diffraction with multilayer freeform metagratings,Optica, 2023, 10(5): 585-593.
[3] J.Zhang, X.Dun*, J.Y.Zhu, Z.Y.Zhang, C.Feng, Z.S.Wang, W.Heidrich, and X.B. Cheng*,LargeNumerical Aperture Metalens with High Modulation Transfer Function,ACS Photonics,(2023)
[4] C.Feng, T.He*, Y.Z.Shi, Q.H.Song, J.Y.Zhu, J.Zhang, Z.S.Wang*, D.P.Tsai*, X.B. Cheng*,DiatomicMetasurface for Efficient Six-Channel Modulation of Jones Matrix,Laser & Photonics Reviews,(2023) 2200955
[5] X.Deng, W. Tan, Z.H. Tang, Z.C.Lin, X.B. Cheng*,and T.B.Li,Scanning and Splicing AtomLithography for Self-traceable Nanograting Fabrication,Nanomanuf Metrol (2022) 5, 179–187
[6] S.Y.Dong, H.F.Jiao, Z.SWang, J.L.Zhang* , X.B. Cheng*, Interfaceand defects engineering for multilayer laser coatings,Progress in SurfaceScience (2022)97:100663.
[7] T. He,T.Liu, S.Y. Xiao, Z.Y. Wei, Z.S Wang*, L.Zhou*, X.B. Cheng*,“Perfect anomalous reflectors at optical frequencies”, Science Advances 8(9) : eabk3381(2022).
[8] X.Deng,G.L. Dai*, J. Liu, X.K. Hu, D.Bergmann, J. Zhao, R.Z. Tai, X.Y. Cai, Y. Li, T.B.Li, X.B. Cheng*, “A new type of nanoscale reference grating manufacturedby combined laser-focused atomic deposition and x-ray interference lithographyand its use for calibrating a scanning electron microscope”,Ultramicroscopy 226 : 113293(2021).
[9] X.Dun, H. Ikoma, G. Wetzstein, Z.S. Wang, X.B. Cheng*, Y.F. Peng, L.Rotationally“Symmetric Diffractive Achromat for Full-Spectrum Computational Imaging”,Optica7(8) : 913-922 (2020).
[10] F.Liu, H.F. Jiao, B. Ma, S. Paschelc, I. Balasac, D. Ristauc, Z.S. Wang, J.L.Zhang*, X.B. Cheng*, “Influence of the surface and subsurfacecontaminants on laser-induced damage threshold of anti-reflectionsub-wavelength structures working at 1064 nm”, Optics & LaserTechnology127 : 106144 (2020).
[11] J.L.Zhang, S.K. Shi, H.F. Jiao, X. C. Ji, Z.S. Wang, and X.B. Cheng*, “Ultra-broadband reflector using double-layersubwavelength gratings”, Photonics Research 8(3), 426-429 (2020)
[12] T.He, J.L. Zhang, H.F. Jiao, Z.S. Wang, X.B. Cheng*, “Near-infraredbroadband Si:H/SiO2 multilayer gratings with high tolerance tofabrication errors”, Nanotechnology 31(31) : 315203 (2020).
[13] L.Y.Xie, H.S. Liu, J. Zhao, H.F.Jiao, J.L. Zhang, Z.S. Wang, X.B Cheng*, “Influenceof dry etching on the properties of SiO2 and HfO2 singlelayers”, Applied Optics 59(5) : A128-A134 (2020).
[14] Z.Y.Zhang, H.G. Liang, T. He, Z.S. Wang, X.B. Cheng*, “Photonic spin Halleffect based on broadband high-efficiency reflective metasurfaces”, AppliedOptics 59(5) : A63-A68(2020).
[15] S.Y.Dong , J.L. Zhang , H.F. Jiao, W. Zhang, X.Y. Li, Z.S. Wang and X.B. Cheng*, “Nanopillars assistedmultilayer antireflection coating for photovoltaics with multiple bandgaps”,Applied Physics Letters, 115(13): 133106 (2019).
[16] X.B. Cheng,S.Y. Dong, Z. Song, S. Paschel, I. Balasa, D. Ristau and Z.S. Wang, “Waterproofcoatings for high-power laser cavities”, Light: Science & Applications,8(1), 12 (2019).
[17] H.H.Fang, P.S. Wu, P. Wang, Z. Zheng, Y.C. Tang, J.C. Ho, G. Chen, Y.M. Wang, C.X.Shan, X.B. Cheng,* J. Zhang,* andW.D. Hu*, “Global Photocurrent Generation in Phototransistors Based onSingle-Walled Carbon Nanotubes toward Highly Sensitive Infrared Detection”,Adv. Optical Mater. 1900597, 1-8, (2019).
[18] L.Zhang, Z.Y. Wei, J.L. Zhang, H.S. Liu, Y.Q. Ji, S. Schröder, M. Trost, Z.S.Wang and X.B. Cheng*, “Quantitativeassessment and suppression of defect-induced scattering in low-loss mirrors”, Optics Letters, 43(24),6025-6028 (2018).
[19] X.Deng, J. Liu, L.Zhu, B.W. Zhang, P.F. He, X.B.Cheng*, T.B. Li, “Realization of orthogonality in two-step laser focused Cratomic deposition”, Optik (2019) 185 : 423-428.
[20] J.L.Zhang, H.F. Jiao, B. Ma, Z.S. Wang, and X.B.Cheng*, “Laser-induced damage of nodular defects in dielectric multilayercoatings”, Optical Engineering ,57(12) ,121909 (2018).
[21] X.Deng*, J. Liu, L. Zhu, P.F. He, X.B.Cheng* and T.B. Li, “Natural square ruler at nanoscale”, Applied PhysicsExpress, 11(7), 075201 (2018).
[22] S.Y.Dong, H.F. Jiao, G.H Bao, J.L. Zhang, Z.S. Wang and X.B.Cheng*, “Origin and compensation of deposition errors in abroadband antireflection coating prepared using quartz crystal monitoring”,Thin Solid Films, 660 ,54-58(2018).
[23] X.R. Wang, X.B. Cheng*, L.F. Zhang, X. Deng, and T.B. Li, “Asymmetric lineedge roughness of multilayer grating reference materials”, AIP Advances, 8(3),035311(2018).
[24] L.Zhang, J.L. Zhang, H.F. Jiao, G.H. Bao, Z.S. Wang and X.B. Cheng*, “Thickness-dependentsurface morphology and crystallization of HfO2 coatings preparedwith ion-assisted deposition”, Thin Solid Films, 642, 359-363 (2017).
[25] F. Liu, S.Y. Dong,J.L. Zhang, H.F Jiao, B. Ma, Z.S. Wang and X.B.Cheng*, “Interface and material engineering for zigzag slablasers”, Scientific Reports, 7, 16699(2017).
[26] J.L.Zhang, H. Wu, H.F. Jiao, S. Schroder, M. Trost, Z. S. Wang and X. B. Cheng*, “Reducing lightscattering in high-reflection coatings through destructive interference atfully correlated interfaces”, Optics Letters, 42(23),5046-5049 (2017).
[27] X. B. Cheng,T. He, J.L. Zhang, H.F. Jiao, B. Ma, and Z.S. Wang*, “Contribution ofangle-dependent light penetration to electric-field enhancement at nodules inoptical coatings”, Optics Letters, 42(11), 2086-2089 (2017).
[28] H.P. Ma, X. B. Cheng*, J. L. Zhang, H.F. Jiao, B. Ma, Y. J. Tang, Z. L. Wu and Z. S. Wang, “Effect of boundarycontinuity on nanosecond laser damage of nodular defects in high-reflectioncoatings”, Optics Letters,42(3), 478-481 (2017).
[29] J.L. Zhang X.Q. Bu, H. F. Jiao, B. Ma, X.B. Cheng* and Z. S. Wang*, “Laser damage properties of broadband lowdispersion mirrors in sub-nanosecond laser pulse”, OpticsExpress, 25(1), 305-312 (2017).
[30] L.Zhang, X. B. Cheng*, J. L. Zhang, H.F. Jiao, G. H. Bao, T. Ding, and Z. S. Wang, “Characterization of grain sizesand roughness of HfO2 single layers”, AppliedOptics, 56(4), C24-C29 (2017).
[31] Z.Song, X. B. Cheng*, H. P. Ma, J. L.Zhang, B. Ma, H. F. Jiao, and Z. S. Wang, “Influence of coating thickness onlaser-induced damage characteristics of anti-reflection coatings irradiated by1064 nm nanosecond laser pulses”, Applied Optics, 56(4), C188-C192 (2017).
[32] X. B. Cheng, Z.Song, J. L. Zhang, H. F. Jiao, B. Ma, Z. Sui, and Z. S. Wang*, “Optimal coatingsolution for a compact resonating cavity working at Brewster angle”, Optics Express,24(21), 24313-24320 (2016).
[33] H.P. Ma, X. B. Cheng*, J. L. Zhang, B.Ma, H. F. Jiao, Z. S. Wang, T. B. Li, J. Yu, Z. J. Kang, Y. J. Tang,“Electric-field intensity enhancement of a series of artificial nodules in abroadband high-reflection coating”, Optical Engineering,56(1), 011027-011027(2016).
[34] X. B. Cheng,A. Tuniyazi, Z. Y. Wei, J. L. Zhang, D. Tao, H. F. Jiao, B. Ma, H. Q. Li, T. B.Li, and Z. S. Wang*, “Physical insight toward electric field enhancement atnodular defects in optical coatings”, Optics Express,23(7), 8609-8619 (2015).
[35] X. B. Cheng andZ. S. Wang*, “Defect-related properties of optical coatings”, Advanced Optical Technologies, 3 (1), 65-90(2014). InvitedReview
[36] X. B. Cheng,A. Tuniyazi, J. L. Zhang, D. Tao, Z. Y. Wei, H. Q. Li and Z. S. Wang,“Nanosecond laser-induced damage of nodular defects in dielectric multilayermirrors”, Applied Optics, 53, A62-A69 (2014).
[37] X. B. Cheng,J. L. Zhang, D. Tao, Z. Y. Wei, H. Q. Li and Z. S. Wang, “The effect of anelectric field on the thermomechanical damage of nodular defects in dielectricmultilayer coatings irradiated by nanosecond laser pulses”, Light: Science& Applications ,2, e80 (2013).
[38]Z. S.Wang, G. H. Bao, H. F. Jiao, B. Ma, J. L. Zhang, T. Ding, and X. B. Cheng*, “Interfacial damage in aTa2O5/SiO2 double cavity filter irradiated by1064 nm nanosecond laser pulses”, Optics Express, 21(25), 30623-30632 (2013).
[39] X. B. Cheng,H. F. Jiao, J. L. Lu, B. Ma, and Z. S. Wang, “Nanosecond pulsed laser damagecharacteristics of HfO2/SiO2 high reflection coatingsirradiated from crystal-film interface”, Optics Express,21(12), 14867-14875(2013).
[40] J.T. Lu, X. B. Cheng, Z. S. Wang, H.S. Liu and Y. Q. Ji “Separation of interface and volume absorption in HfO2single layers”, Optical Engineering, 51, 121814-1-6 (2012) .
[41] X. B. Cheng,Z. X. Shen, H. F. Jiao, J. L. Zhang, B. Ma, T. Ding and Z. S. Wang, “HfO2/SiO2high reflectors for 1.064 um high power laser applications”, Applied Optics 50,C357-C363 (2011) .
[42] X. B. Cheng,B. Fan, J. A. Dobrowolski, L. Wang and Z. S. Wang, “Gradient-index opticalfilter synthesis with controllable and predictable refractive index profiles”,Optics Express, 16(4): 2315-2321 (2008).
[43] X. B. Cheng,Z. S. Wang, Z. Zhang, F. L. Wang and L. Y. Chen, “Design of X-ray super-mirrorsusing simulated annealing algorithm”, OpticsCommunications, 265(1): 197-206 (2006).
专利:
授权时间 | 代表性授权专利名称及专利号 | 排名 |
2022.2 | 一种高损伤阈值的多层介质膜矩形衍射光栅制备方法202011420469.2 | 第一 |
2021.2 | 一种基于高反膜的线性位相梯度超表面201910893576.8 | 第一 |
2020.7 | 一种二维原子光刻栅格结构制备方法201810548515.3 | 第一 |
2020.6 | 一种用于实现分步沉积型二维原子光刻的装置201810548512.X | 第一 |
2020.4 | 一种修正石英监控法制备宽带增透膜沉积误差的方法201710944000.0 | 第一 |
2017.10 | 一种提高近红外高反膜激光损伤阈值的方法201410050291.5 | 第一 |
2017.3 | 一种钕玻璃激光器用背入射式高反薄膜系统的制备方法201610940925.3 | 第一 |
2015.6 | 一种防水性激光薄膜的制备方法201310093167.2 | 第一 |
2022.9 | 一种自溯源型光栅干涉精密位移测量系统202110862699.2 | 第二 |
2020.6 | 一种用于板条激光器谐振腔全反射面的薄膜结构201710855096.3 | 第二 |
2019.10 | 一种用于板条激光器的晶体全反射面的减反射结构201811635606.7 | 第二 |
2019.9 | 一种低散射损耗的高反射薄膜201710865078.3 | 第二 |
2015.7 | 一种抑制半波孔的倍频分束薄膜201310108420.7 | 第二 |
2017.1 | 一种面向激光薄膜内部缺陷的溯源性损伤阈值测量方法201410050368.9 | 第三 |
2017.2 | 一种基于人工缺陷的激光薄膜定量化研究方法201410050186.1 | 第三 |
2015.6 | 一种基于特征人工节瘤缺陷的激光预处理技术201410050350.9 | 第三 |
2015.12 | 一种三硼酸氧钙钇晶体(YCOB)高激光损伤阈值增透膜的制备方法201410050236.6 | 第三 |
2015.4 | 一种真空环境下高效率多功能的激光损伤测试的装置和方法201310102099.1 | 第三 |
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