TTL科研育人 | X-LAB

TTL科研育人团队招新介绍

44118太阳成城位于中山大学珠海校区,是学校强化和发展微电子学科的创新举措,旨在培养世界一流的集成电路设计和制造工艺高级人才,致力于国家急需的自主产权的高性能芯片的研究。学院目前已形成多个TTL科研育人课题组。将科研大团队建设和科研育人相结合,推动科教有机融合。

 

一、团队名称

X-LAB

 

二、教师介绍

徐政基,中山大学副教授、博士生导师、44118太阳成城院长助理。入选广东省青年拔尖人才项目,中山大学优秀班主任。本科和博士均毕业于新加坡南洋理工大学电子与电气工程学院。曾担任新加坡科技研究局(ASTAR)微电子研究院(IME)研究科学家,新加坡理工大学(SIT)Associate Faculty. 主要研究领域为:微纳光电子器件设计与制造、人工智能微纳光子学、硅基光子学、平面光学、测量与传感器技术等。迄今发表SCI论文60余篇,包括Laser and Photonics Review、Photonics Research、 Nano Letters、 Nanophotonics、Nature Communications、Nanoscale、Small、Optics Letters、Optics Express、IEEE Transactions on Nanotechnology和IEEE Photonics Technology Letters等, H-index为19。是芯片领域国产旗舰期刊Chip首届青年编委, 长期担任Nature Communications、ACS Photonics、 Advanced Optical Materials、 Optics Letters等期刊的审稿人。

 

三、详细介绍

01

团队口号

SLOGAN:波粒中寻义理,土黄中造惊奇

 

02

团队目标

1)追求极致,培养兴趣。提升本硕博学习能力与创造力;

2)对标前沿,鼓励合作。努力打造一流学术成果;

3)创新驱动,有趣有用。培养学术界和产业界共同需要的人才。

 

03

团队成员

团队目前有在读硕博研究生12名:张树斌、吴志勇、纵美雪、吕晋雯、龙邹、刘以晴、马雨飞、郑再阳、王炜鑫、邓靖贤、范烨、郑力天

已毕业博士生2名:

梅路遥博士(与朱璐老师联合培养):就职于珠海市工信局/珠海市干部人才储备中心

邓文强博士(与朱述炎老师联合培养):就职于四川九洲电器集团

 

已毕业硕士生1名:

王锦浩:中山大学物理与天文学院博士研究生

 

TTL计划现有成员

梁晋珩(2021级本科生),冯高扬(2021级本科生)

 

部分曾参与本组大创和TTL科研训练的首届本科毕业生深造去向情况:

林琪璇(上海交通大学)、范烨(中山大学,国家奖学金获得者)、彭洁(中山大学)、林子淳(港科广红鸟硕士班,中山大学本科生优秀毕业论文获得者)、杨芷昕(中山大学)、茹心怡(西安交大)、李愚(中科院微电子所)、邵嘉桢(美国圣路易斯华盛顿大学)、卫璟霖(美国西北大学)等。

部分团队成员合影

44118太阳成城

2020年首个立项的大创项目成果:

授权专利第一发明人为2019级本科生林琪璇

 

四、研究方向

01

硅基光子学和PIC相关设计,包括但不限于MRR、MZI、AWG、OPA...

(images from LJH and WWX.)

 

02

超构材料与二维材料物理机理研究与设计

(images from《Laser & Photonics Reviews》volume 18, issue 4,封底文章;Advanced Photonics Nexus, 2023, 2(5): 056003)

可参阅两江科技评论公众号文章:

双带BIC独立可调的双非对称周期锗基超构光栅

 

 

可参阅中国激光杂志社公众号文章:

声学石墨烯等离激元的高效消色差聚焦 | Advanced Photonics Nexus

 

03

人工智能辅助的微纳结构逆向设计

(images from Optics Letters, 2022, 47, 3239–3242.)

 

 

04

平面光学与半导体制造工艺研究

(images from Photonics Research, 2021, 9(1),13-20封面文章;Nanophotonics, 2020, 9(10), 3071-3087.)

 

05

成像系统及集成 (images from Opt. Lett. 48, 1902–1905 (2023),Nano Letters, 2020,20(4), 2602-2608.)

 

06

微纳光学传感器 (images from Small, 2017, 13 (30), 1700600.)

 

 

代表性论文

2024 [1],2023 [2–5],2022 [6–9],2021 [10–12],2020 [13–17],2019 [18–20],2018 [21,22],2017 [23–25],2016 [26],2015 [27],2014 [28],2013 [29],2012 [30]

1.Z. Wu, B. Liu, S. Liao, and Z. Xu, "Vibrational strong coupling between graphene plasmons and organic molecules facilitated by perfect absorbers," Optics & Laser Technology 179, 111370 (2024).

2.S. Zhang, M. Zong, Y. Liu, Z. Wu, J. Lv, and Z. Xu, "Independent Dual‐Band Bound States in the Continuum Supported by Double Asymmetric Periodic Gratings in Germanium‐Based Structure," Laser & Photonics Reviews 2301206 (2023).

3.Zhiyong Wu and Zhengji Xu, "Achromatic on-chip focusing of graphene plasmons for spatial inversions of broadband digital optical signals," Advanced Photonics Nexus 2, 056003 (2023).

4.Z. Wu and Z. Xu, "Understanding and probing of sub-femtometer resolutions utilizing acoustic plasmon resonances in graphene-dielectric-metal hybrid-structures," Optics & Laser Technology 162, 109305 (2023).

5. M. Zong, Y. Liu, J. Lv, S. Zhang, and Z. Xu, "Two-dimensional optical differentiator for broadband edge detection based on dielectric metasurface," Opt. Lett. (2023).

6.W. Deng, Z. Xu, J. Wang, and J. Lv, "Long short-term memory neural network for directly inverse design of nanofin metasurface," Opt. Lett. 47, 3239–3242 (2022).

7.J. Wang, Z. Lin, Y. Fan, L. Mei, W. Deng, J. Lv, and Z. Xu, "Design of All-Dielectric Metasurface-Based Subtractive Color Filter by Artificial Neural Network," Materials 15, 7008 (2022).

8.L. Mei, R. Huang, C. Shen, J. Hu, P. Wang, Z. Xu, Z. Huang, and L. Zhu, "Hybrid Halide Perovskite-Based Near-Infrared Photodetectors and Imaging Arrays," Advanced Optical Materials 10, 2102656 (2022).

9.K. Ye, T. Xu, Q. Zhong, Y. Dong, S. Zheng, Z. Xu, and T. Hu, "Demonstration of polarization-insensitive optical filters on silicon photonics platform," Optics Express 30, (2022).

10.Z. Xu, N. Li, Y. Dong, Y. H. Fu, T. Hu, Q. Zhong, Y. Zhou, D. Li, S. Zhu, and N. Singh, "Metasurface-based subtractive color filter fabricated on a 12-inch glass wafer using a CMOS platform," Photon. Res. 9, 13–20 (2021).

11.Y. Huang, J. Zhang, J. Zhou, B. Qiang, Z. Xu, L. Liu, J. Tao, N. Kossowski, Q. Wang, and Y. Luo, "Polarization-robust mid-infrared carpet cloak with minimized lateral shift," Photon. Res. 9, 944–949 (2021).

12.F. Suo, J. Tong, X. Chen, Z. Xu, and D. H. Zhang, "Hole array enhanced dual-band infrared photodetection," Opt. Express 29, 6424–6433 (2021).

13.N. Li, Z. Xu, Y. Dong, T. Hu, Q. Zhong, Y. H. Fu, S. Zhu, and N. Singh, "Large-area metasurface on CMOS-compatible fabrication platform: driving flat optics from lab to fab," Nanophotonics 9, 3071–3087 (2020).

14.Q. Tan, Z. Xu, D. H. Zhang, T. Yu, S. Zhang, and Y. Luo, "Polarization-Controlled Plasmonic Structured Illumination," Nano Lett. (2020).

15.Dong Yuan, Xu Zhengji, Li Nanxi, Tong Jinchao, Fu Yuan Hsing, Zhou Yanyan, Hu Ting, Zhong Qize, Bliznetsov Vladimir, Zhu Shiyang, Lin Qunying, Zhang Dao Hua, Gu Yuandong, and Singh Navab, "Si metasurface half-wave plates demonstrated on a 12-inch CMOS platform," Nanophotonics 9, 149 (2020).

16.F. Suo, J. Tong, L. Y. M. Tobing, W. Fan, Z. Xu, and D. H. Zhang, "Comparative study of U- and U4-split-ring resonator-based metasurfaces for sensing in near- and mid-infrared region," Journal of Optics 22, 125104 (2020).

17.T. Hu, Q. Zhong, N. Li, Y. Dong, Z. Xu, Y. H. Fu, D. Li, V. Bliznetsov, Y. Zhou, K. H. Lai, Q. Lin, S. Zhu, and N. Singh, "CMOS-compatible a-Si metalenses on a 12-inch glass wafer for fingerprint imaging," Nanophotonics (2020).

18.Z. Xu, Y. Dong, C.-K. Tseng, T. Hu, J. Tong, Q. Zhong, N. Li, L. Sim, K. H. Lai, Y. Lin, D. Li, Y. Li, V. Bliznetsov, Y.-H. Fu, S. Zhu, Q. Lin, D. H. Zhang, Y. Gu, N. Singh, and D.-L. Kwong, "CMOS-compatible all-Si metasurface polarizing bandpass filters on 12-inch wafers," Opt. Express 27, 26060–26069 (2019).

19.Z. Xu, Y. Dong, Y. Hsing Fu, Q. Zhong, T. Hu, D. Li, Y. Li, N. Li, Y. Lin, Q. Lin, S. Zhu, and N. Singh, "Embedded Dielectric Metasurface Based Subtractive Color Filter on a 300mm Glass Wafer," in 2019 Conference on Lasers and Electro-Optics (CLEO) (2019), pp. 1–2.

20.N. Li, Y. H. Fu, Y. Dong, T. Hu, Z. Xu, Q. Zhong, D. Li, K. H. Lai, S. Zhu, Q. Lin, Y. Gu, and N. Singh, "Large-area pixelated metasurface beam deflector on a 12-inch glass wafer for random point generation," Nanophotonics 8, (2019).

21.M. Ren, J. Pu, V. Krishnamurthy, Z. Xu, C.-W. Lee, D. Li, L. Gonzaga, Y. T. Toh, F. Tjiptoharsono, and Q. Wang, "Hybrid integrated single-wavelength laser with silicon micro-ring reflector," in Silicon Photonics XIII, G. T. Reed and A. P. Knights, eds. (SPIE, 2018), Vol. 10537, pp. 63–68.

22.T. Hu, C.-K. Tseng, Y. H. Fu, Z. Xu, Y. Dong, S. Wang, K. H. Lai, V. Bliznetsov, S. Zhu, Q. Lin, and Y. Gu, "Demonstration of color display metasurfaces via immersion lithography on a 12-inch silicon wafer," Opt. Express 26, 19548–19554 (2018).

23.J. Tong, W. Zhou, Y. Qu, Z. Xu, Z. Huang, and D. H. Zhang, "Surface plasmon induced direct detection of long wavelength photons," Nature Communications 8, 1660 (2017).

24.G. Li, L. Wu, K. F. Li, S. Chen, C. Schlickriede, Z. Xu, S. Huang, W. Li, Y. Liu, E. Y. B. Pun, T. Zentgraf, K. W. Cheah, Y. Luo, and S. Zhang, "Nonlinear Metasurface for Simultaneous Control of Spin and Orbital Angular Momentum in Second Harmonic Generation," Nano Lett. 17, 7974–7979 (2017).

25.L. Jiang, S. Zeng, Z. Xu, Q. Ouyang, D. H. Zhang, P. H. J. Chong, P. Coquet, S. He, and K.-T. Yong, "Multifunctional Hyperbolic Nanogroove Metasurface for Submolecular Detection," Small 13, (2017).

26.S. Mei, K. Huang, H. Liu, F. Qin, M. Q. Mehmood, Z. Xu, M. Hong, D. Zhang, J. Teng, A. Danner, and C.-W. Qiu, "On-chip discrimination of orbital angular momentum of light with plasmonic nanoslits," Nanoscale 8, 2227–2233 (2016).

27.Z. Xu, L. Y. M. Tobing, Y. Xie, J. Tong, P. Ni, S. Qiu, T. Yu, and D. H. Zhang, "Aluminum based structures for manipulating short visible wavelength in-plane surface plasmon polariton propagation.," Opt Express 23, 22883–22889 (2015).

28.Z. Xu, T. Li, D. H. Zhang, C. Yan, D. Li, L. Tobing, F. Qin, Y. Wang, X. Shen, and T. Yu, "Groove-structured metasurfaces for modulation of surface plasmon propagation," Applied Physics Express 7, 052001 (2014).

29.Z. Xu, D. H. Zhang, T. Li, C. Yan, D. Li, Y. Wang, and F. Qin, "Manipulating Surface Plasmon Polaritons on the meta-surface," in 2013 IEEE 5th International Nanoelectronics Conference (INEC) (2013), pp. 446–448.

30.Z. Xu, D. H. Zhang, C. Yan, D. Li, and Y. Wang, "Concentric cylindrical metamaterials for subwavelength dark hollow light cones," Journal of Optics 14, 114014 (2012).

 

五、联系邮箱

徐政基:xuzhj27@mail.sysu.edu.cn