个人信息

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姓名: 杨先光

部门: 物理与光电工程学院

性别:

职务: 副教授

职称: 副研究员(自然科学)

学位: 博士学位

毕业院校: 中山大学

联系电话:

电子邮箱: xianguang@jnu.edu.cn

办公地址: 广州番禺兴业大道东855号

通讯地址:

邮编:

传真:

荣誉奖励: 省级青年人才

联系方式

博士后全球招聘

1、要求:第一作者至少发表中科院JCR二区论文1篇;
2、待遇:按博士后办法提供年薪,住房补贴,以及论文和项目奖励。在站期间可申报副高、正高职称,指标单列。
3、联系:
xianguang@jnu.edu.cn,本人将亲自对初审通过者在10个工作日之内邮件回复。

团队常年招聘青年教师,欢迎优秀学子报考博士生、硕士生和本科生实习。

【点击:www.x-mol.com/groups/Yang_xianguang





个人简介

近5年主持国家自然科学基金、广东省自然科学基金优秀青年项目、青年科技人才托举工程项目5项。以第一/通讯(含共同)在Nano LettersApplied Physics ReviewsAdvanced Optical Materials 等期刊发表学术论文15篇,与合作者在 Nature CommunicationsAdvanced Materials 等期刊发表论文5篇。其中7篇成果被选为期刊封面,3篇入选ESI高被引论文,Web of Science总他引1483次。参编Springer出版社学术专著3部。第一发明人申请专利4件,其中授权3。部分成果曾被MIT Technology Review评述,相关技术应用于生物传感,并集成于基金委重大仪器三维纳米光操控仪(本人排名3/16)。2025年入选中国产学研合作促进会创新人才库,被聘为Nano-Micro Letters青年编委2024年入选Nanoscale新锐科学家,担任Nanomaterials客座编辑,组织《Nanostructured Materials for Photonic and Plasmonic Applications》专题发表中国工程院罗先刚院士等团队原创论文Nanomaterials 2024, 14, 929Nanomaterials 2023, 13, 2776Nanomaterials 2024, 14, 1622 等)。部分成果与美国斯坦福大学、意大利比萨大学、香港科技大学、英国格拉斯哥大学、日本大阪大学和新加坡国立大学等合作发表。其中,四篇合作论文被意大利国家研究理事会纳米科学中心主任Lucia Sorba连续四年列入该中心两年一度研究报告。申请人与唐本忠院士合作发表论文 2024Wiley 出版社高贡献作者奖,相关内容被ChemistryViews 栏目亮点介绍。在中国光学会学术年会、全国光子技术论坛、世界激光制造大会等国内外重要学术会议上作邀请报告20余次,系统展示了在光学相关领域的研究进展。 


学习经历

中山大学,光学工程专业(直接攻博),获工学博士学位(提前毕业

      导师:李宝军 教授

法国巴黎高等师范学院-中山大学理论物理研习班(巴黎高师班)

      中方指导老师:李志兵 教授

      法方指导老师:Prof. Gerald BastardProf. Christos Flytzanis

                              Prof. John IliopoulosProf. Nicolas Sourlas

中山大学,光信息科学与技术专业,获理学学士学位






工作经历

2019年10月-至今 纳米光子学研究院 副教授

2019年05月-至今 学术学位研究生指导教师 

2018年01月-2020年12月 纳米光子学研究院 院长助理 

2016年12月-2019年09月 纳米光子学研究院 助理教授

研究方向

1、光电材料与波导器件Optoelectronic Material & Waveguide Device

光具有波粒二象性,可以作为信息和能量的载体。人类的眼睛借助可见光看清物体,反映出信息的载体;皮肤能够感受阳光照射的热量,反映出能量的载体。可见,光子技术与人类生活密不可分。因此,理解光子与物质相互作用是驾驭光子技术的理论前提。从通讯光纤的全反射到纳米光纤的倏逝场,都离不开微纳空间尺度对光子进行束缚这一关键科学问题。在微纳尺度上对光场施加更强的约束,研究极小空间光子传播的新现象、新规律和新机制,发展新的光子约束技术,是纤维光学、集成光学和导波光学等关联学科的前沿方向。


2、天然微光纤生物传感(Natural Microfiber Biosensing)

研究面向生物医学传感领域的材料生物相容性瓶颈,开创 “天然微光纤多级结构光场调控” 新方式,以莲藕丝微光纤为载体,突破传统传感器“功能材料-基底分离”设计局限,致力于“Edible Optical Fibers for Real-Time Gastric Monitoring”。


注:课题组精益求精,报读前望认真考虑。希望能招到志趣相投的研究生共同创造奇迹:

具备强烈探索欲望和独立思考能力;良好沟通能力和英文写作能力;敷衍了事混学位者请绕道,以免双方都痛苦。


3、深度学习赋能图像传感芯片(Deep learning empowers image sensing chips)

基于生成对抗网络(DCGAN)和 NSGA-II 算法的逆设计框架,解决纳米光子结构优化中的多目标协同难题。通过训练超 20,000 组随机路由结构数据,实现光谱响应与结构参数的精准映射,为亚微米像素级图像传感器的高效颜色路由提供智能化设计工具, 推动人工智能在集成电路光学设计中的深度应用。此外,全彩色路由与近红外集成技术可拓展至医疗成像(如内窥镜)、光通信(如数据中心 LiDAR)、农业监测(如多光谱分析)等领域,推动跨行业技术融合与产品创新, 预计在物联网、人工智能硬件等领域形成百亿级市场应用。








主要论文

1. Xianguang Yang*, Liping Xu, Shijie Xiong, Hao Rao, Fangchang Tan, Jiahao Yan, Yanjun Bao, Annachiara Albanese, Andrea Camposeo, Dario Pisignano, and Baojun Li, Light-Emitting Microfibers from Lotus Root for Eco-friendly Optical Waveguides and Biosensing. Nano Letters 202424 (2), 566-575. (Cover, Highlighted by MIT Technology Review) IF 10.8

2. Zhitao Lin#Xianguang Yang#,*, Junda He, Ning Dong, and Baojun Li*, Structural and Optoelectronic Characterization of Anisotropic Two-dimensional Materials and Applications in Polarization-Sensitive Photodetectors. Applied Physics Reviews 202512 (1), 011301. (Featured Article in AIP Publishing) IF 11.9

3. Qiuguo Li,# Hao Rao,# Xinzhou Ma, Haijuan Mei, Zhengting Zhao, Weiping Gong,* Andrea Camposeo, Dario Pisignano, and Xianguang Yang,* Unusual red light emission from nonmetallic Cu2Te microdisk for laser and SERS applications. Advanced Optical Materials 2022,10 (1), 2101976. (Highlight on Wiley MaterialsViews China and Advanced Science News) IF10.05

4. Hao Rao,# Zicheng Liu,# Ming Chen*, Canze Zheng, Liping Xu, Junkai Liu, Jacky W. Y. Lam, Baojun Li*, Xianguang Yang* and Ben Zhong Tang*, Light-up the White Light Emission in Microscale with a Superior Deep-Blue AIE Fiber as Wave-Guiding Source. Aggregate 20245 (2), e453. (Front Cover, Highlight on Wiley ChemistryViews Europe) IF18.8

5. Qiuguo Li*, Shijie Xiong, Kaijian Huang, Weiping Gong, Long Wen, Qin Chen, Baojun Li, Xianguang Yang*, Multicolor Emission in Indium-doped Cubic Boron Nitride Integrated on Silicon for Self-biased and High-speed Photodetection. ACS Applied Materials & Interfaces 2025, 17 (6), 9655-9668.

6. Shijie Xiong and Xianguang Yang*, Optical Color Routing Enabled by Deep Learning. Nanoscale 2024, 16 (19), 9284-9294. (Inside Front Cover, Nanoscale 2024 Emerging Investigator)

7. Qiuguo Li, Hao Rao, Haijuan Mei, Zhengting Zhao, Weiping Gong,* Andrea Camposeo, Dario Pisignano, and Xianguang Yang*, Erbium-doped WS2 with Down- and Up-Conversion Photoluminescence Integrated on Silicon for Heterojunction Infrared Photodetection. Advanced Materials Interfaces 2022, 9 (24), 2201175. (Highlight on Wiley MaterialsViews China) IF6.389

8. Qiuguo Li, Hao Rao, Xianguang Yang*, Zhaohui Guo, Weiping Gong, Xinzhou Ma*, and Baojun Li, Optimizing the Atom Substitution of Er in WS2 Nanosheets for High-Performance Photoelectrochemical Applications. The Journal of Physical Chemistry C 2022, 126 (22),9293-9303. 

9. Mingjie Chen,# Long Wen,# Dahui Pan, David R. S. Cumming, Xianguang Yang,* and Qin Chen,* Full-color nanorouter for high-resolution imaging. Nanoscale 2021, 13 (30), 13024-13029. IF8.307

10. Xianguang Yang,* Long Wen, Jiahao Yan, Yanjun Bao, Qin Chen, Andrea Camposeo, Dario Pisignano, and Baojun Li.* Energy dissipation and asymmetric excitation in hybrid waveguides for routing and coloring. The Journal of Physical Chemistry Letters 2021, 12 (29), 7034-7040. IF6.888  


注:IF为发表当年影响因子。


11.  Xianguang Yang*, Rui Xu, Long Wen, Zaizhu Lou, Qin Chen, and Baojun Li*. Light-induced thermal convection for collection and removal of carbon nanotubes. Fundamental Research 2022, 2(1), 59-65.

12.  Liping Xu#, Xianguang Yang#,*, Ming Chen, Kai Li, Junda He, Dehua Tian, Zaizhu Lou, Fangchang Tan, Puxiang Lai, Andrea Camposeo, Dario Pisignano, and Baojun Li, Active optical waveguides and metal ion sensors based on nanofibers with aggregation induced emission. Nano Research 2025, 18 (x), 94907572. IF 9.6

13. Zhitao Lin, Junda He, Le Ding, Jinfeng Zhang, Leiming Wu,* Yibin Gan, Shunbin Lu,* Puxiang Lai, Baojun Li,* and Xianguang Yang*,Successful Preparation of Co-BTE Metal-Organic Frameworks for All-Optical Nonlinear Switching and Photonic Diode Functions. ACS Applied Materials & Interfaces 2026, 18 (25), 35742-35752. 

14. Jinfeng Zhang, Puxiang Lai, Baojun Li, and Xianguang Yang*, From Optical Pipes to Intelligent Platforms: The Evolution of Fiber-Optic Waveguides with Multifunctional Materials. Advanced Optical Materials 2026, 14 (14), e03863.

15.  Qiuguo Li,*,# Jinfeng Zhang,# Junda He, Jiahao Yan, Puxiang Lai, Baojun Li, and Xianguang Yang*, Voltage-Controlled Dual-Band Electroluminescence from In-Doped hBN/GaN Heterojunctions for Switchable UV-Visible Emission. ACS Applied Materials & Interfaces 2026, 18 (10), 15415-15429. IF8.2





 


主要著作

1. Xianguang Yang, and Baojun Li*. Chapter 3: Localized and Propagated Surface Plasmons in Metal Nanoparticles and Nanowires, in PLASMONICS, Edited by Tatjana Gric, IntechOpen, London, UK, 5 November 2018. [ISBN: 978-1-78984-435-1]Pages 21-38 【共18页,6500字】(2018, Invited)

DOI: 10.5772/intechopen.78284

Chapter 3 in PLASMONICS (2018) 22-38

 

2. Xianguang Yang*, Qin Chen, and Baojun Li*. Chapter 2: Hybrid Optoelectronic Materials for Photodetection Applications, in Advances in Optoelectronic Materials, Edited by Shadia Jamil Ikhmayies and Hatice Hilal Kurt, SpringerNature, Cham, Switzerland, 13 March 2021. [ISBN: 978-3-030-57737-7]Pages 45-64 【共20页,6800字】(2021, Invited)

DOI: 10.1007/978-3-030-57737-7_2

Chapter 2 in Advances in Optoelectronic Materials (2021) 45-64

 

3. Xianguang Yang*, Long Wen, and Baojun Li. Chapter 1: Optical Sources and Waveguides Based on Flexible 1D Nanomaterials, in Advanced Nanomaterials, Edited by Shadia Jamil Ikhmayies, SpringerNature, Cham, Switzerland, 30 September 2022. [ISBN: 978-3-031-11995-8]Pages 1-19 【共19页,7000字】(2022, Invited)

DOI: 10.1007/978-3-031-11996-5_1

Chapter 1 in Advanced Nanomaterials (2022) 1-19

 

4. Xianguang Yang*, Jiahao Yan, and Baojun Li*. Chapter 11: Microcavity Mediated Light Emissions from Plasmonic and Dielectric Composites, in Advanced Composites, Edited by Shadia Jamil Ikhmayies, SpringerNature, Cham, Switzerland, 01 December 2023. [ISBN: 978-3-031-42731-2]Pages 369-389 【共21页,7800字】(2023, Invited)

DOI: 10.1007/978-3-031-42731-2_11

Chapter 11 in Advanced Composites (2023) 369-389




承担课题

国家自然科学基金项目

科技部重点研发计划课题

广东省自然科学基金优秀青年项目

青年科技人才托举工程项目

发明专利

1. 李宝军,杨先光,一种有机-无机纳米线及其制备方法和有机-无机光探测器及其制备方法,2017.06.26,中国,ZL 201710495117.5

2. 李宝军,杨先光,张垚,李宇超一种纳米线p-n异质结及其制备方法2017.10.19,中国,ZL 201710979906.6

3. 杨先光,李宝军,李宇超,许海燕,唐恝,一种光耦合材料及其制备方法和应用,2018.01.26,中国,ZL 201810078967.X

4. 杨先光,李宝军,文龙,娄在祝,陈沁,一种纳米线激光器及其制备方法,2018.11.05,中国,ZL 201811307705.2

5.杨先光,李宝军,娄在祝,文龙,李宇超,陈沁,一种量子等离激元材料及其制备方法和应用,2019.04.26,中国,ZL 201910343059.3

6. 杨先光,饶浩,文龙,陈沁,李宝军,一种四苯基吡嗪、四苯基吡嗪微光纤及其制备方法和应用、波导调制器,20230522日,中国,ZL 202310572422.5

7. 杨先光,许莉萍,谭昉畅,李宝军,一种莲藕丝微光纤及其制备方法和光波导应用,20231108日,中国,ZL 2023114799771

8. 杨先光,林志滔,李宝军,钴基 MOF 材料乙醇分散液及其制法与在三阶非线性光学中的应用,2025  03  27 日,中国,ZL 2025103731115

9. 谭昉畅,李宝军,董宁,杨先光,何俊达,一种荧光金属有机框架/纤维素纳米晶复合材料及其制备方法和应用,2024.10.25,中国,ZL 202411495566.6

10. 李宇超,李宝军,张垚,陈熙熙,辛洪宝,杨先光,基于生物透镜的细胞捕获和荧光增强的装置及其方法,2018.11.14,中国,ZL 201811354422.3

11. 杨先光,丁乐,李宝军,基于天然杜仲胶丝光波导的微流控芯片及光学检测装置,2025.06.27,中国,实用新型 ZL 202521351076.9

12. 杨先光,何俊达,李宝军,一种纤维素-Eu-MOF 复合材料及其制备方法和应用,20251226,中国,ZL 202511992293.0



 


讲授课程

1、主讲研究生课程《有源器件与技术

理工学院/光子技术研究院/纳米光子学研究院

  

2、参与本科生课程《信息光子学前沿

讲授“纳米光子学”专题

暨南大学理工学院光电工程系


荣誉奖励

省级青年人才

社会职务

Nano-Micro Letters青年编委

Nanoscale新锐科学家

Nanomaterials客座编辑

Nano Letters、Nano Research、Nature Communications、Optica特约仲裁


国家自然科学基金、科技部重点研发计划等通讯评审专家

202510月入选中国产学研合作促进会创新人才库(聘期5年)

广东省基金、季华实验室、广州市军民融合、浙江省基金等会评专家


本人积极与国内外同行开展学术交流与合作,在国内外重要学术会议进行邀请报告,分享天然微光纤、莲藕丝光波导、蜜蜂偏振视觉等自然启发的学术思想。


11. Xianguang Yang, August 10-14 2025, Sofitel People's Tower (Xi'an, China), International Conference on Information Optics and Photonics (CIOP 2025), Deep-blue AIE fiber as waveguiding source, Invited Presentation

10. Xianguang Yang, July 28-31 2025, Sunshine Hotel (Zhangjiajie, China), International Conference on Optical Communications and Networks (ICOCN’ 2025), Optical Fibers and Waveguide Technology, Invited Speech

9. Xianguang Yang, November 22-24 2024, Xingchen Hangdu International Hotel (Chengdu, China), The 6th International Congress on Advanced Materials Sciences and Engineering, Discovery, Preparation and Application of Optical Waveguides in Lotus Root, Invited Speech

8. Xianguang Yang, November 15-17 2024, Chime Long International Convention Center (Guangzhou, China), Nature Conference on Disruptive Photonics Technologies (DPT 2024), Fiber Optical Waveguide, Short Talk

7. Xianguang Yang, July 26-29 2024, Harbin Victories Hotel (China), International Conference on Optical Communications and Networks (ICOCN 2024), Light-Emitting Microfibers from Lotus Root for Eco-Friendly Optical Waveguides, Invited Speech

6. Xianguang Yang, July 23-26 2024, China National Convention Center CNCC, World Photonics Conference 2024 includes 13th Applied Optics and Photonics China (AOPC 2024), Light-Emitting Microfibers from Lotus Root for Eco-Friendly Optical Waveguides, Invited Speech

5. Xianguang Yang, July 31 - August 03 2023, Shangri-La Hotel at Qufu(China), International Conference on Optical Communications and Networks (ICOCN 2023), Two-Dimensional Material Optoelectronics, Invited Speech

4. Xianguang Yang, 17-19 May 2022, Southern University of Science and Technology at Shenzhen, International Conference on Advanced Semiconductors and Displays (ICASD 2022), Two-Dimensional Semiconductors for Nanostructured Optoelectronics, Invited Speech

3. Xianguang Yang, 20-22 August 2021, XXX Hotel at Guangzhou, International Conference on Precision Instruments and Optical Engineering (PIOE) 2021, Optical Properties and Lasing Physics in Flexible Fibers Doped with Nanocrystals, Keynote Speech

2. Xianguang Yang, 12-14 July 2021,Barcelona, Spain, 13th International Conference and Expo on Nanotechnology & Nanomaterials (iNanotech-2021), Microscopic and Nanoscopic Materials and Devices for Optoelectronics, Keynote Speech

1. Xianguang Yang, Baojun Li, 21-24 May 2021, Vebleo (Online Zoom meeting), Webinar on Materials Science, Engineering and Technology, Optical Physics of Composite Fibers with Particles, Keynote Speech