
朱立全,男,1987年生,籍贯福建省龙岩市武平县。2006年考入中国科学技术大学少年班学院理科试验班(2010年获学士学位,电子信息工程专业);2010-2018年在深圳创业;2019起于中国科学技术大学物理学院光学与光学工程系硕博连读,2023年获得工学博士学位;2023.06至2025.06任中国科学技术大学物理学院博士后研究员;2025.07至今任中国科学技术大学物理学院副研究员(硕士生导师)。主要研究领域为激光显示、多基色显示、颜色理论、视觉健康和可见光光纤激光器。近年来一直致力于多基色激光显示系统的研究及其应用探索,作为研究骨干先后参与三项国家重点研发计划(《超高清投影式和平板式激光显示研发及应用》、《面向三基色LD激光显示整机关键技术基础研究》、《大规模复杂表面全色激光投影显示技术研究》)和一项安徽省重大科技专项研究,主持安徽省面上基金《面向广色域显示的RGBC四基色激光显示系统研制及其色彩管理机制研究》。在国内外高水平学术刊物上发表论文三十余篇,申请专利六十余项,授权二十余项。参与项目《激光全色显示关键技术》获得2023年安徽省科技进步奖三等奖。
近年来,主要聚焦于基于激光显示的颜色匹配及同色异谱特性探索、基于激光显示的H-K效应机制探索及其应用研究、多基色激光显示系统的产品化探索。前两个项目意在通过探索人眼对于不同波长的窄谱宽激光的颜色响应和亮度响应,修正CIE提出的颜色匹配曲线,获得适用于亚洲人种的视觉感知特性,为激光显示中的色域映射和亮度映射提供研究基础。在此基础上,结合多基色激光显示系统样机,探索各个关键器件的小型化和系统化技术,有望在五年内实现多基色激光显示系统的产品化。
Jiacheng Xiang, Yuantong Chen, Chonghe Yang, Fengtian Gao, Xuwei Zhao, Yunfei Xiao, Chun Gu, Lixin Xu, Liquan Zhu*, Mitigation of observer metamerism in laser displays via categorical observer classification[J]. Optics and laser technology. Volume 200, March 2026, 115070
Fengtian Gao, Yuantong Chen, Jiacheng Xiang, Yunfei Xiao, Xuwei Zhao, Chonghe Yang, Shengjie Xu, Chun Gu, Lixin Xu, Liquan Zhu*, Multi-Primary displays alleviate observer metamerism in laser displays by enhancing spectral degrees of freedom[J]. Optics and laser technology. Volume 2026, Apir 2026, 115324
Yunfei Xiao, Yabao Zhuang, Jiacheng Xiang, Fengtian Gao, Xuwei Zhao, Chun Gu, Lixin Xu, Liquan Zhu*, Perceptually-driven cyan enhancement using a content-adaptive algorithm for RGBC four-primary laser displays[J] Optics & Laser Technology, Volume 203, Part B, 2026,115650
Jiacheng Xiang, Xuwei Zhao, Yunfei Xiao, Fengtian Gao, Yuantong Chen, Chonghe Yang, Shengjie Xu, Chun Gu, Lixin Xu, Liquan Zhu*, Quantifying observer metamerism in displays: From device-specific assessment to display primary spectral optimization for minimizing observer metamerism[J] Displays, Volume 95, 2026, 103583
[5] Liquan Zhu#, Ting Li, Binghui Yao, Linxiao Deng, Yuhua Yang, Chun Gu*, Lixin Xu. Demonstration and gamut enhancement of RGGB four-primary laser projection display system[J] Optics and laser technology. Volume 177,October 2024, 111123.
[6] Liquan Zhu#, Zhipeng Dong#, Jinhai Zou, Linxiao Deng, Ting Li, Yuantong Chen, Chun Gu*, Lixin Xu, Zhengqian Luo. Potential Application of Green Fiber Laser in Laser Display Systems[J] Appl. Opt. 2023, 62, 4102-4109
[7] Liquan Zhu#, Binghui Yao, Li Ting, Linxiao Deng, Yuhua Yang, Lixin Xu, and Chun Gu*. Research on the color gamut volume and light efficiency in four-primary laser display systems[J] Opt. Express 2023, 31, 26815-26830
[8] Liquan Zhu#, Guan Wang, Yuhua Yang, Binghui Yao, Chun Gu, and Lixin Xu*. Six-primary-laser projection display system: demonstration and stereo color gamut measurement[J]. Optics Express, 2021, 29(26): 43885-43898. (二区Top)
[9] Liquan Zhu#, Binghui Yao, Linxiao,Deng,Yuhua Yang, Guan Wang, Chun Gu, LiXin Xu*. Impact of color temperature on the color gamut volume of a six-primary-laser display system[J].Optik,Volume 264, August 2022, 169414
[10] Liquan Zhu#, Binghui Yao, Linxiao Deng, Yuhua Yang, Guan Wang, Chun Gu, and Lixin Xu*. Evaluation of gamut enhancement in yellow regions and a choice of optimal wavelength for a RGBY four-primary laser display system[J].Optics Express 2022, 30, 38938-38952
[11] Liquan Zhu#, Guan Wang, Yuhua Yang, Binghui Yao, Chun Gu, Lixin Xu*. Six-primary-laser projection display system compatible with 3D and 2D display[C]//Semiconductor Lasers and Applications XI. SPIE, 2021, 11891: 127-132.
[12] Yabao Zhuang, Liquan Zhu, Long He, Xiangqian Chen, Lixin Xu. "Design method for efficiently recording freeform holographic optical elements", Proc. SPIE 13542, Fourth International Computational Imaging Conference (CITA 2024), 135425K (25 Feb 2025); https://doi.org/10.1117/12.3057306
[13] Yuantong Chen, Jiacheng Xiang, Ting Li, Fengtian Gao, Liquan Zhu, Lixin Xu. "Effect of light sources on speckle reduction and color gamut performance in laser display systems", Proc. SPIE 13542, Fourth International Computational Imaging Conference (CITA 2024), 135421Q (25 Feb 2025); https://doi.org/10.1117/12.3055584
[14] Fengtian Gao, Ting Li, Yuantong Chen, Jiacheng Xiang, Liquan Zhu, Lixin Xu. "Research of metamerism in laser displays", Proc. SPIE 13542, Fourth International Computational Imaging Conference (CITA 2024), 135421F (25 Feb 2025); https://doi.org/10.1117/12.3055547
[15] Yunfei Xiao, Yabao Zhuang, Jiacheng Xiang, Fengtian Gao, Xuwei Zhao, Chun Gu, Lixin Xu, Liquan Zhu*. "Analysis of the color gamut character of RGBC four-primary laser display system", Proc. SPIE 14177, Eleventh Symposium on Novel Optoelectronic Detection Technology and Applications (NDTA 2025), 1417776 (11 May 2026); https://doi.org/10.1117/12.3109612
[16] Binghui Yao,Liquan Zhu, Yuhua Yang, Guan Wang, Chun Gu, and Lixin Xu. General solution to the calculation of peak luminance of primaries in multi-primary display systems[J]. Optics Express 2022, 30, 1036-1055
[17] Binghui Yao,Liquan Zhu, Yuhua Yang, Guan Wang, Chun Gu, and Lixin Xu. Upper limit of gamut volumes in multi-primary display systems[J]. Optics Express 2022 30, 36576-36591
[18] Yuhua Yang, Linxiao Deng,Liquan Zhu, Chun Gu, and Lixin Xu, "Resolution-preserving passive 2D/3D convertible display based on holographic optical elements," Optics Express 2022, 30, 13356-13371
[19] Linxiao Deng, Binghui Yao, Yuhua Yang,Liquan Zhu, Guan Wang, Chun Gu, and Lixin Xu. Color-speckle assessment in multi-primary laser-projection systems based on a 3D Jzazbz color space[J]. Optics. Express 2022, 30, 33374-33394
[20] Linxiao Deng, Yuhua Yang, Guan Wang, Binghui Yao, Jiafei Ma,Liquan Zhu, Chun Gu, Lixin Xu. Color speckle assessment for laser projection systems based on human speckle perception[J]. Optics & Laser Technology 156 (2022) 108554
[21] Yuhua Yang, Linxiao Deng,Liquan Zhu, Binghui Yao, Xuexiao Ma, Chun Gu, Lixin Xu. “Characterization and design of a freeform holographic optical element,” Optik, 2023: 170788.
[22] 杨雨桦,何龙,邓林宵,朱立全,顾春,许立新. 基于全色全息透镜的增强现实系统[J].物理学报, 2023,72(11):171-180.
[23] Ting Li, Binghui Yao,Liquan Zhu, Linxiao Deng, Yuhua Yang, Yuantong Chen, Lixin Xu, and Chun Gu, "Color gamut extension algorithm for various images based on laser display," Opt. Express 32, 3891-3911 (2024)
[24] Yuantong Chen, Linxiao Deng, Binghui Yao, Yuhua Yang, Liquan Zhu, Ting Li, Lixin Xu, Chun Gu, Effect of rough screen on speckle suppression by wavelength and angle diversity in laser projection systems, Displays, Volume 82, 2024, 102647, ISSN 0141-9382
[25] Yuantong Chen, Jiacheng Xiang, Fengtian Gao, Liquan Zhu, Lixin Xu, Evaluation and configuration of light sources with suppressing speckle and maintaining color gamut in laser displays,Optics & Laser Technology 184 (2025) 112533
[26] Yabao Zhuang, Liquan Zhu, Yuhua Yang, Long He, Xiangqian Chen, Lixin Xu*. Design method for augmented reality head-mounted systems based on freeform holographic optical elements [J]Displays, Volume 90, 2025, 103176,, https://doi.org/10.1016/j.displa.2025.103176.
[27] 朱立全,姚昞晖,邓林宵,杨雨桦,王贯,顾春,许立新*. RGGB四基色激光显示系统的研究[J].激光技术,2023,47(06):772-777. (中文核心)
[28] 邓林宵,杨雨桦,姚昞晖,朱立全,王贯,顾春,许立新. 多基色激光显示系统彩色散斑分布特性的研究[J/OL].激光技术: 1-10 [2023-11-28]. http://kns.cnki.net/kcms/detail/51.1125.tn.20221108.1715.004.html.
[29] 四基色激光显示系统中色温对立体色域、色域覆盖率及光效的影响探究. LI Ting , ZHU Liquan , CHEN Yuantong , XU Lixin , GU Chun . Influence of color temperature on color gamut volume, gamut coverage, and light efficiency in four-primary laser display systems[J]. Chinese Journal of Quantum Electronics, 2025, 42(3): 391-404.(封面文章)
专利
已授权发明专利 8项:
[1] 投影融合方法、装置、系统及电子设备[P]发明专利,中国,ZL20241 0917780.X,朱立全,顾春,庄亚宝
[2]投影画面的调节方法、装置、存储介质及电子设备[P]发明专利,中国,ZL202410917719.5,朱立全,顾春,庄亚宝
[3] 一种健康指标检测装置[P] 发明专利,中国, ZL202510702970.4,朱立全,肖云飞,顾春,田大伟
[4] 一种成像式健康指标检测装置[P] 发明专利,中国,ZL202510677006.0,朱立全,顾春,肖云飞,庄亚宝,田大伟
[5] 一种多基色显示系统立体色域的快速测量方法[P] 发明专利,中国,ZL202211722532.7,朱立全,张金,杨雨桦,邓林宵
[6] 一种幕布环境光遮蔽率的评估方法及装置[P] 发明专利,中国,ZL 202410962703.6,庄亚宝,顾春,朱立全,肖云飞,张金
[7] 一种散斑测量分析设备及方法[P] 发明专利,中国,ZL 202410273619.3,陈渊通,顾春,朱立全,田大伟,何帧荣,叶成伟
[8] 一种多基色系统基色参数优化方法[P] 发明专利,中国,ZL 202211586922.6,姚昞晖,邓林宵,杨雨桦,朱立全
已授权实用新型专利 15项:
[1]一种激光散斑现象以及激光散斑抑制现象的观测系统[P] 实用新型,中国,CN2024205880172,朱立全,叶成伟,顾春
[2] 一种激光迷宫装置[P] 实用新型,中国,ZL 202420981110.X,朱立全,李勤生,田大伟,张金,庄亚宝
[3] 一种投影显示设备[P] 实用新型,中国,ZL 202420644878.8, 朱立全,顾春,李婷
[4] 一种颜色感知能力测量系统 [P] 实用新型,中国,ZL 202421804502.5,朱立全,肖云飞,田大伟,牛子龙,顾春
[5] 一种基于全息光学元件的少模光纤模式测量装置[P] 实用新型,中国,ZL 202420487675.2,何龙,顾春,陈向前,朱立全
[6] 适用于教育场景的护眼投影装置[P] 实用新型,中国,ZL 202420668674.8,李婷,顾春,朱立全,陈渊通
[7] 一种激光器用拆盖工装[P] 实用新型,中国,ZL 202421450418.8,田大伟,顾春,尹亚铁,朱立全,张金
[8] 一种用于AR技术中的眼球追踪结构及眼镜[P] 实用新型,中国,ZL 202520622365.1,何龙,顾春,朱立全,陈向前
[9] 一种应用于多模光纤的消散斑匀光装置[P] 实用新型,中国,ZL 202520474896.0,陈向前,顾春,何龙,朱立全
[10] 一种光学投影镜头及投影设备[P] 实用新型,中国, ZL 202422900013.6,周滔,吕强,顾春,朱立全
[11] 一种双DMD提高激光投影色彩对比度的消散斑投影结构[P] 实用新型,中国,ZL 202422861305.3,陈向前,朱立全,肖云飞,顾春
[12] 一种基于无人机的空中可拼接超短焦高清显示机构[P] 实用新型,中国,ZL 202422702359.5叶成伟,朱立全,顾春,田大伟
[13] 一种多用途投影机包装箱[P] 实用新型,中国,ZL 202422345350.3,顾春,田大伟,朱立全
[14] 一种弧形导轨光学测试台[P] 实用新型,中国,ZL 202422299406.6,田大伟,顾春,朱立全,庄亚宝
[15] 照明光斑直径自动检测装置[P] 实用新型,中国,ZL 202422227113.7,何祯荣,朱立全,李勤生,左金城
已授权外观专利 2项:
[1] 反射式激光电视[P]外观设计,中国,ZL 202430028775.4,吕强,顾春,尹亚铁,朱立全
[2] 激光投影机[P] 外观设计,中国,ZL 202430424691.2,吕强,顾春,尹亚铁,朱立全
审查中尚未授权专利四十余件。
课题研究
[1] 项目编号: 2016YFB0401900,国家重点研发计划,《面向三基色LD激光显示整机关键技术基础研究》,资助单位:中华人民共和国科学技术部,2016年07月(15日) 至 2020年12月(实际结题2021年7月),经费 1600万,课题负责人:许立新, 已结题,参与
课题编号: 2021YFF0307804,国家重点研发计划科技冬奥专项,《大规模复杂表面全色激光投影显示技术研究》,资助单位:中华人民共和国科学技术部,2021年08月(24日) 至 2022年06月,经费 805万,课题承担单位:中国科学技术大学,课题负责人:许立新,已结题,参与
安徽省科技厅, 安徽省自然科学基金面上项目, 2508085MF146, 面向广色域显示的RGBC四基色激光显示系统研制及其色彩管理机制研究, 2025-09 至 2028-08, 8万元, 在研, 主持
中华人民共和国工业和信息化部, 重点新材料研发及应用国家科技重大专项, 2025ZD0616600, 超高清投影式和平板式激光显示研发及应用, 2025-07 至 2028-06, 20681万元, 在研, 研究骨干
学术奖励
2023年 《激光全色显示技术》安徽省科技进步三等奖