![]() |
博士,副教授 |
徐杰,1993年生于江西乐平,分别于2014年、2017年以及2020年在南昌大学取得学士学位、硕士研究生学位以及博士研究生学位。2020年博士毕业后任职于西南医科大学。 主要研究领域包括磁光异质结构相关理论及其在亚波长及超亚波长功能器件中的应用研究、慢光、超材料、异常光学透射、近零折射率模式与材料研究。近期研究重心在利用磁光异质结构进行全光逻辑门的设计与实现。
![]() |
博士 | 南昌大学 | 材料科学与工程 | 导师:沈林放、邓晓华 (2017.9 ~ 2020.7) |
![]() |
访学博士 | 丹麦技术大学 | 光学工程 | 导师:肖三水 (2018.11 ~ 2020.2) |
![]() |
硕士 | 南昌大学 | 等离子体物理 | 导师:沈林放 (2014.9 ~ 2017.7) |
![]() |
本科 | 应用物理学 | 南昌大学 (2010.9 ~ 2014.7) |
磁光单向波导:由于外磁场或者剩磁的存在,磁光系统中电磁波的传输特性呈现非互易性,通常利用这种特性可以设计支持电磁波单向传输的单向波导结构。 而这些结构也将可以用在一些特定功能的应用上,如利用单向波导进行能量缓存与释放,进行光缓存及光开关的应用。
INZ电磁模式理论及应用研究:折射率近似为零(index-near-zero,INZ)电磁模式被广泛研究与介电常数近似为零(epsilon-near-zero,ENZ)材料中,由于其特殊的空间相位不变性,其主要可用来进行如光学隐身等领域。
全光逻辑器件:微型电子计算机中的逻辑运算受限于其中急剧增加的串扰及能量损失,而基于全光逻辑运算的光学计算是一个潜在的解决方案。
P. He, Y. Shen, S. Xiao, L. Hong, Y. You, K. L. Tsakmakidis*, Y. Luo*, and J. Xu*, “Precisely tunable and predictable index-near-zero modes across continuous and broad bands,” Appl. Phys. Lett., 124(16), 161109 (2024). [PDF][web]
J. Xu*, Y. Luo, K. Yong, K. Baskourelos, and K. L. Tsakmakidis*, "Topological and High-Performance Nonreciprocal Extraordinary Optical Transmission from a Guided Mode to Free-Space Radiation," Commun. Phys., 6, 339 (2023). [PDF][web]
J. Xu*, P. He, D. Feng, Y. Luo, S. Fan, K. Yong*, and K. L. Tsakmakidis*, "Tunable all-optical microwave logic gates based on topologically protected edge modes," Opt. Express, 31(25), 42388-42399 (2023). [PDF][web]
J. Xu*, Y. Luo, S. Xiao, F. Kang*, and K. L. Tsakmakidis*, "All-optical digital logic based on unidirectional modes," Adv. Opt. Mater., 11(1), 2201836 (2022). [PDF][web]
Y. Zhou, P. He, S. Xiao, F. Kang, L. Hong, Y. Shen, Y. Luo, and J. Xu*, "Realization of tunable index-near-zero modes in nonreciprocal magneto-optical heterostructures," Opt. Express 30(15), 27259-27272 (2022). [PDF][web]
X. Zhong, M. Ali, X. Wang, W. Lu, K. Yong, D. Feng, Y. Zhou*, and J. Xu*, "Direct growth of hierarchically Ni3S2 nanostructures on nickel foam for enhanced hydrogen evolution reaction," Indian Journal of Chemistry (IJC) 63(1), 105-111 (2024). [PDF][web]
J. Xu, S. Xiao, P. He, Y. Wang, Y. Shen, L. Hong*, Y. Luo*, and B. He*, "Realization of broadband truly rainbow trapping in gradient-index metamaterials," Opt. Express 30(3), 3941-3953 (2022). [PDF][web]
K. Yong*, B. Tang, Y. Wang, D. Feng, M. Yang, B. He, Y. Luo, and J. Xu*, "Propagation characteristics study of radially polarized Gaussian vortex beam in ocean turbulence," Optik, 170074 (2022). [PDF][web]
L. Hong, Y. Wang, Y. Shen, X. Deng, K. Yuan, S. Xiao, and J. Xu*, "Broadband energy squeezing and tunneling based on unidirectional modes," Opt. Mater. Express 11(9), 2975-2984 (2021). [PDF][web]
J. Xu, T. Li, L. Zhang, B. He, D. Feng, and Y. Zhou*, "One‐step synthesis of anionic S‐substitution toward Ni2P (S) nanowires on nickel foam for enhanced hydrogen evolution reaction," Int. J. Energy Res. 45(11), 16973–16983 (2021). [PDF][web]
J. Xu, P. He, D. Feng, K. Yong, L. Hong, Y. Shen, and Y. Zhou*, "Slow wave and truly rainbow trapping in a one-way terahertz waveguide," Opt. Express 29(7), 11328-11341 (2021). [PDF][web]
J. Xu, Q. Shen, K. Yuan, X. Deng, Y. Shen, H. Zhang, C. Wu, S. Xiao, and L. Shen*, "Trapping and releasing bidirectional rainbow at terahertz frequencies," Opt. Communications 473, 125999 (2020). [PDF][web]
J. Xu, X. Deng, H. Zhang*, C. Wu, M. Wubs, S. Xiao, and L. Shen*, "Ultra-subwavelength focusing and giant magnetic-field enhancement in a low-loss one-way waveguide based on remanence," J. Opt. 22(2), 025003 (2020). [PDF][web]
J. Xu, S. Xiao, C. Wu, H. Zhang, X. Deng, and L. Shen*, "Broadband one-way propagation and rainbow trapping of terahertz radiations," Opt. Express 27(8), 10659-10669 (2019). [PDF][web]
T. Zhang, X. Zhang, Y. Shen*, Y. Xu, L. Luo, J. Gu, S. Yang, J. Xu, and X. Deng*, "Experiment on terahertz metasurfaces of metal split ring resonators with bound state in the continuum," APL Mater., 11(5), 051102 (2023). [PDF][web]
M. Yang, H. Zhang, W. Liu, K. Yong, J. Xu, Y. Luo, and H. Zhang*, "Knowledge graph analysis and visualization of artificial intelligence applied in electrocardiogram," Front. Physiol., 14, 1118360 (2023). [PDF][web]
C. Liu, D. Li, P. Boutinaud, J. Xu, Y. Du, Y. Hou, C. Zhang, Q. Zhou, and F. Kang*, "Tailoring Electromagnetic Responses in Terahertz Metasurface by Breaking the Structural Symmetry in T-Shaped Resonators," Advanced Photonics Research, 4, 2200356 (2023). [PDF][web]
F. Kang*, Y. Du, Z. Yang, P. Boutinaud, M. Wubs, J. Xu, H. Ou, D. Li, K. Zheng, A. T. Tarekegne, G. Sun, X. Xu, and S. Xiao*, "Spectral tuning, stabilities under external exposures, and spontaneous enhancement of emission intensity in grown-into-glass all-inorganic metal halide perovskite nanocrystals," Laser Photonics Rev., 2200166 (2022). [PDF][web]
Q. Shen, Y. You, J. Xu, Y. Shen, X. Deng, Z. Wang, W. Min*, L. Shen, and S. Xiao*, "Mechanically scanned leaky-wave antenna based on a topological one-way waveguide," Front. Phys. 15(3), 33601 (2020). [PDF][web]
Q. Shen, L. Shen*, W. Min, J. Xu, C. Wu, X. Deng, and S. Xiao*, "Trapping a magnetic rainbow by using a one-way magnetostatic-like mode," Opt. Mater. Express 9(11), 4399-4408 (2019). [PDF][web]
L. Shen, J. Xu, Y. You, K. Yuan*, and X. Deng, "One-Way Electromagnetic Mode Guided by the Mechanism of Total Internal Reflection," IEEE Photon. Technol. Lett. 30(2), 133–136 (2018). [PDF][web]
L. He, Q. Shen, J. Xu, Y. You, T. Yu, L. Shen*, and X. Deng*, "One-way edge modes in a photonic crystal of semiconductor at terahertz frequencies," Sci. Rep. 8(1), 8165 (2018). [PDF][web]
国家自然科学基金委,青年科学基金项目,项目编号:12404143,基于磁光异质结构的磁可控且可集成的微波全光逻辑门研究,2025-01-01至2027-12-31,30万元,在研,主持
四川省科技厅,自然科学基金项目,项目编号:2023NSFSC1309,磁光异质系统中近零折射率模式及其应用研究,2023-01至2024-12,10万元,在研,主持
泸州科技局,应用基础研究(自由探索),项目编号:2023JYJ046,基于磁光单向边界模式的微波全光逻辑门的理论及其应用研究,2023-07至2025-07,2万元,在研,主持
国家自然科学基金委员会,地区科学基金项目,项目编号:61861031,磁化等离子体鞘套内太赫兹波传播特性的研究,2019-01至2022-12,37万元,结题,参与
光电功能材料重庆市重点实验室开放课题,磁光异质系统中宽带可调近零折射率模式研究,2022-06至2023-06,1万元,结题,主持
西南医科大学校级项目,项目编号:20/00160222,微波与太赫兹亚波长功能器件研究,2021-12至2023-12,2万元,结题,主持
西南医科大学高层次人才启动经费,项目编号:20/00040186,2020-12至今,18万元
智能控制与电子器件应用泸州市重点实验室开放课题,项目编号:ZK202210,基于铁磁及磁光材料的全光逻辑运算研究,2022-05至2024-05,结题,参与