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西安电子科技大学电子工程学院导师教师师资介绍简介-李汝江

本站小编 Free考研考试/2021-06-27



李汝江 博士
菁英副教授 
电子工程学院
研究方向:拓扑光子学、非线性光学、微纳光子学

联系方式
地址:西安电子科技大学北校区科技实验楼A902
邮箱:rujiangli@xidian.edu.cn


个人简介
李汝江博士,“华山****”菁英副教授。2011年本科毕业于山西大学物理学国家基地班,2014年获山西大学理论物理专业硕士学位,2018年获浙江大学电子科学与技术专业博士学位。2019年和2020年分别在以色列Tel Aviv University和新加坡Nanyang Technological University从事博士后研究。2021年加入西安电子科技大学电子工程学院,并入选“华山****”菁英副教授岗位。
主要研究方向包括拓扑光子学/电磁学/电路,线性和非线性等离激元学等。目前已出版专著一部(Cambridge University Press),在SCI期刊发表论文30余篇。以第一、共一或通讯作者发表论文13篇,包括ESI高被引论文(2篇)、National Science Review (IF > 15)、Nanoscale、 Carbon、Physical Review A(2篇)、Optics Letters 等。研究成果被EurekAlert!、Phys.org等科技媒体报道;入选期刊(Nanoscale)封底。
长期担任Carbon、Photonics Research、Optics Letters、Optics Express、2D Materials 等近20个SCI期刊审稿人。
Link to Google Scholar:
https://scholar.google.com.hk/citations?hl=en&user=C_CG4LMAAAAJ





李汝江 博士
菁英副教授 
电子工程学院
研究方向:拓扑光子学、非线性光学、微纳光子学

联系方式
地址:西安电子科技大学北校区科技实验楼A902
邮箱:rujiangli@xidian.edu.cn


个人简介
李汝江博士,“华山****”菁英副教授。2011年本科毕业于山西大学物理学国家基地班,2014年获山西大学理论物理专业硕士学位,2018年获浙江大学电子科学与技术专业博士学位。2019年和2020年分别在以色列Tel Aviv University和新加坡Nanyang Technological University从事博士后研究。2021年加入西安电子科技大学电子工程学院,并入选“华山****”菁英副教授岗位。
主要研究方向包括拓扑光子学/电磁学/电路,线性和非线性等离激元学等。目前已出版专著一部(Cambridge University Press),在SCI期刊发表论文30余篇。以第一、共一或通讯作者发表论文13篇,包括ESI高被引论文(2篇)、National Science Review (IF > 15)、Nanoscale、 Carbon、Physical Review A(2篇)、Optics Letters 等。研究成果被EurekAlert!、Phys.org等科技媒体报道;入选期刊(Nanoscale)封底。
长期担任Carbon、Photonics Research、Optics Letters、Optics Express、2D Materials 等近20个SCI期刊审稿人。
Link to Google Scholar:
https://scholar.google.com.hk/citations?hl=en&user=C_CG4LMAAAAJ




专著
1.R.Li, Z.Wangand H.Chen, "Metamaterials and Negative Refraction", (Cambridge University Press, 2020).


论文
#Co-First Author; *Corresponding Author.
31.B.Lv#, R.Chen#, R.Li*, C.Guan, B.Zhou, G.Dong, C.Zhao, Y.Li, Y.Wang, H.Tao*, J.Shi* and D.-H.Xu*, “Realization of quasicrystalline quadrupole topological insulators in electrical circuits”, Communications Physics 4, 108 (2021). (Reported by 两江科技评论)
30. R.Li and Y.Hadad*, “Reduced sensitivity to disorder in a coupled-resonator waveguide with disordered coupling coefficients”, Physical Review A 103, 023503 (2021). (Reported by 两江科技评论)
29. P.Li, R.Li and C.Dai*, “Existence, symmetry breaking bifurcation and stability of two-dimensional optical solitons supported by fractional diffraction”, Optics Express 29, 3193 (2021).
28. R.Li#, B.Lv#, H.Tao, J.Shi, Y.Chong*, B.Zhang* and H.Chen*, “Ideal type-II Weyl points in topological circuits”, National Science Review nwaa192 (2020). (Reported by EurekAlert!, phys.org, 中国科学杂志社,国家科学评论,哈尔滨工程大学,两江科技评论,知社学术圈)
27. M.Imran, R.Li*, Y.Jiang, X.Lin, B.Zheng, S.Dehdashti, Z.Xu and H.Wang*, “Airy beams on two dimensional materials”, Optics Communications 414, 40 (2018).
26. X.He, T.Ning, S.Lu, J.Zheng, J.Li, R.Li and L.Pei*, “Ultralow loss graphene-based hybrid plasmonic waveguide with deep-subwavelength confinement”, Optics Express 26, 10109 (2018).
25. P.Li*, C.Dai, R.Li and Y.Gao, “Symmetric and asymmetric solitons supported by a PT-symmetric potential with saturable nonlinearity: bifurcation, stability and dynamics”, Optics Express 26, 6949 (2018).
24. M.Y.Musa, R.Maturi, X.Lin*, R.Li, H.Wang, E.Li, B.Zhang and H.Chen*, “Confined transverse electric phonon polaritons in hexagonal boron nitrides”, 2D Materials 5, 015018 (2018).
23. R.Li, H.Wang*, B.Zheng, S.Dehdashti, E.Li and H.Chen*, “Bistable scattering in graphene-coated dielectric nanowires”, Nanoscale 9, 8449 (2017).
22. R.Li, M.Imran, X.Lin, H.Wang*, Z.Xu and H.Chen*, "Hybrid Airy plasmons with dynamically steerable trajectories”, Nanoscale 9, 1449 (2017). (Featured by back cover)
21. R.Li, X.Lin, B.Zheng*, S.Lin, E.Li and H.Chen*, “Design of ultracompact graphene-based superscatterers”, IEEE Journal of Selected Topics in Quantum Electronics 23, ** (2017). (ESI highly cited paper)
20. L.Shen, H. Wang*, R.Li, Z.Xu and H.Chen, “Hyperbolic-polaritons-enabled dark-field lens for sensitive detection”, Scientific Reports 7, 6995 (2017).
19. X.He, T.Ning*, R.Li, L.Pei and J.Zheng, “Dynamical manipulation of Cosine-Gauss beams in a graphene plasmonic waveguide”, Optics Express 25, 13923 (2017).
18. C.Qian, H.Wang*, R.Li, B.Zheng, Z.Xu and H.Chen, “Observing the transient buildup of a superscatterer in the time domain”, Optics Express 25, 4697 (2017).
17. J.Wu*, H.O. Moser, R.Li, Y.Yang, L.Jing, H.Chen and M.B. H. Breese, “Magnetic Fano resonances by design in symmetry broken THz meta-foils”, Scientific Reports 7, 41869 (2017).
16. B.Lv, J.Fu*, B.Wu, R.Li, Q.Zeng, X.Yin, Q.Wu, Z.Liang, A.Li, L.Gao, W.Chen, Z.Wang and R.Ma, “Unidirectional invisibility induced by parity-time symmetric circuit”, Scientific Reports 7, 40575 (2017).
15. J.Fu, B.Lv*, R.Li, R.Ma, W.Chen and Z.Wang, “Excitation of surface plasmon polaritons in an inhomogeneous graphene-covered grating”, Plasmonics 12, 209 (2017).
14. H.Wang, Y.Deng, B.Zheng*, R.Li, Y.Jiang, S.Dehdashti, Z.Xu and H.Chen, “Panoramic lens designed with transformation optics”, Scientific Reports 7, 40083 (2017).
13. R.Li, X.Lin, S.Lin, X.Zhang, E.Li* and H.Chen*, "Graphene induced mode bifurcation at low input power", Carbon 98, 463 (2016).
12. B.Lv*, R.Li*, J.Fu*, Q.Wu, K.Zhang, W.Chen, Z.Wang and R.Ma, "Analysis and modeling of Fano resonances using equivalent circuit elements", Scientific Reports 6, 31884 (2016).
11. C.Qian, R.Li, Y.Jiang, B.Zheng, H.Wang*, Z.Xu and H.Chen, "Transient response of a signal through a dispersive invisibility cloak", Optics Letters 41, 4911 (2016).
10.X.Lin, R.Li, F.Gao, E.Li, X.Zhang, B.Zhang and H.Chen*, "Loss induced amplification of graphene plasmons", Optics Letters 41, 681 (2016).
9. J.Fu, B.Lv*, R.Li, R.Ma, W.Chen and F.Meng, “Excitation of graphene plasmons as an analogy with the two-level system”, Physics Letters A 380, 803 (2016).
8. R.Li, X.Lin, S.Lin*, X.Liu and H.Chen*, “Atomically thin spherical shell-shaped superscatterers based on a Bohr model”, Nanotechnology 26, 505201 (2015).
7. R.Li, X.Lin, S.Lin, X.Liu and H.Chen*, “Tunable deep-subwavelength superscattering using graphene monolayers”, Optics Letters40, 1654 (2015).
6. S.Dehdashti*, R.Li, J.Liu*, F.Yu and H.Chen*, "Realization of non-linear coherent states by photonic lattices", AIP Advances 5, 067165 (2015).
5. S.Dehdashti*, R.Li, X.Liu, M.Raoofi and H.Chen*, "Role of intertwined Hamiltonian in two dimensional classical optics", Laser Physics 25, 075201 (2015).
4.R.Li, P.Li and L.Li*, "Asymmetric optical amplifier based on paritytime symmetry", Proceedings of the Romanian Academy Series A - Mathematics Physics Technical Sciences Information Science 14, 121 (2013). (ESI highly cited paper)
3.P.Li, R.Li and L.Li*, "Beam dynamics in a double-channel waveguide with gain and loss", Romanian Reports in Physics 64, 1271 (2012).
2.L.Chen, R.Li, N.Yang, D.Chen and L.Li*, “Optical modes in PTsymmetric double-channel waveguides”, Proceedings of the Romanian Academy Series A - Mathematics Physics Technical Sciences Information Science 13, 46 (2012). (ESI highly cited paper)
1.R.Li, F.Lv, L.Li* and Z.Xu, “Symmetry breaking and manipulation of nonlinear optical modes in an asymmetric double-channel waveguide”, Physical Review A 84, 033850 (2011).





Dr. Rujiang Li
Associate Professor 
School of Electronic Engineering
Research interests:topological photonics, nonlinear optics, nanophotonics

Contact Information
Address: Room A902, Science and Technology Experiment Building, North Campus, Xidian University
E-mail: rujiangli@xidian.edu.cn


Biography
Dr. Rujiang Lireceived the Bachelordegree in Physics (National Base) in 2011 and Master degree in theoretical physics in 2014, both from Shanxi University, China. He received thePhDin Electronics Science and Technology from Zhejiang University, China, in 2018. He was a Postdoctoral Fellow at Tel Aviv University, Israel, in2018-2019, and a Research Fellow at Nanyang Technological University, Singapore, in 2019-2020. In 2021, he joined School of Electroic Engineering, Xidian University, as anAssociate Professor of "Huashan Scholars" talent program.
His main research interests include topological photonics/electromagnetics/circuits, and linear and nonlinear plasmonics.He has published one book (Cambridge University Press) and more than 30papers in SCIjournals. As the first or corresponding author, he has published 13papers (including 2 ESI highly cited papers)in National Science Review, Nanoscale, Carbon, Physical Review A, Optics Letters, etc. His works have been reported by scientific media such asEurekAlert! and Phys.org. His work was featured as the Back Cover of Nanoscale.
Dr. Rujiang Li serves asa regular refereeof many international journals, includingCarbon, Photonics Research, Optics Letters, Optics Express, 2D Materials, etc.
Link to Google Scholar:
https://scholar.google.com.hk/citations?hl=en&user=C_CG4LMAAAAJ




Books
1.R.Li, Z.Wangand H.Chen, "Metamaterials and Negative Refraction", (Cambridge University Press, 2020).


Journal Papers
#Co-First Author; *Corresponding Author.
31.B.Lv#, R.Chen#, R.Li*, C.Guan, B.Zhou, G.Dong, C.Zhao, Y.Li, Y.Wang, H.Tao*, J.Shi* and D.-H.Xu*, “Realization of quasicrystalline quadrupole topological insulators in electrical circuits”, Communications Physics 4, 108 (2021). (Reported by 两江科技评论)
30. R.Li and Y.Hadad*, “Reduced sensitivity to disorder in a coupled-resonator waveguide with disordered coupling coefficients”, Physical Review A 103, 023503 (2021). (Reported by 两江科技评论)
29. P.Li, R.Li and C.Dai*, “Existence, symmetry breaking bifurcation and stability of two-dimensional optical solitons supported by fractional diffraction”, Optics Express 29, 3193 (2021).
28. R.Li#, B.Lv#, H.Tao, J.Shi, Y.Chong*, B.Zhang* and H.Chen*, “Ideal type-II Weyl points in topological circuits”, National Science Review nwaa192 (2020). (Reported by EurekAlert!, phys.org, 中国科学杂志社,国家科学评论,哈尔滨工程大学,两江科技评论,知社学术圈)
27. M.Imran, R.Li*, Y.Jiang, X.Lin, B.Zheng, S.Dehdashti, Z.Xu and H.Wang*, “Airy beams on two dimensional materials”, Optics Communications 414, 40 (2018).
26. X.He, T.Ning, S.Lu, J.Zheng, J.Li, R.Li and L.Pei*, “Ultralow loss graphene-based hybrid plasmonic waveguide with deep-subwavelength confinement”, Optics Express 26, 10109 (2018).
25. P.Li*, C.Dai, R.Li and Y.Gao, “Symmetric and asymmetric solitons supported by a PT-symmetric potential with saturable nonlinearity: bifurcation, stability and dynamics”, Optics Express 26, 6949 (2018).
24. M.Y.Musa, R.Maturi, X.Lin*, R.Li, H.Wang, E.Li, B.Zhang and H.Chen*, “Confined transverse electric phonon polaritons in hexagonal boron nitrides”, 2D Materials 5, 015018 (2018).
23. R.Li, H.Wang*, B.Zheng, S.Dehdashti, E.Li and H.Chen*, “Bistable scattering in graphene-coated dielectric nanowires”, Nanoscale 9, 8449 (2017).
22. R.Li, M.Imran, X.Lin, H.Wang*, Z.Xu and H.Chen*, "Hybrid Airy plasmons with dynamically steerable trajectories”, Nanoscale 9, 1449 (2017). (Featured by back cover)
21. R.Li, X.Lin, B.Zheng*, S.Lin, E.Li and H.Chen*, “Design of ultracompact graphene-based superscatterers”, IEEE Journal of Selected Topics in Quantum Electronics 23, ** (2017). (ESI highly cited paper)
20. L.Shen, H. Wang*, R.Li, Z.Xu and H.Chen, “Hyperbolic-polaritons-enabled dark-field lens for sensitive detection”, Scientific Reports 7, 6995 (2017).
19. X.He, T.Ning*, R.Li, L.Pei and J.Zheng, “Dynamical manipulation of Cosine-Gauss beams in a graphene plasmonic waveguide”, Optics Express 25, 13923 (2017).
18. C.Qian, H.Wang*, R.Li, B.Zheng, Z.Xu and H.Chen, “Observing the transient buildup of a superscatterer in the time domain”, Optics Express 25, 4697 (2017).
17. J.Wu*, H.O. Moser, R.Li, Y.Yang, L.Jing, H.Chen and M.B. H. Breese, “Magnetic Fano resonances by design in symmetry broken THz meta-foils”, Scientific Reports 7, 41869 (2017).
16. B.Lv, J.Fu*, B.Wu, R.Li, Q.Zeng, X.Yin, Q.Wu, Z.Liang, A.Li, L.Gao, W.Chen, Z.Wang and R.Ma, “Unidirectional invisibility induced by parity-time symmetric circuit”, Scientific Reports 7, 40575 (2017).
15. J.Fu, B.Lv*, R.Li, R.Ma, W.Chen and Z.Wang, “Excitation of surface plasmon polaritons in an inhomogeneous graphene-covered grating”, Plasmonics 12, 209 (2017).
14. H.Wang, Y.Deng, B.Zheng*, R.Li, Y.Jiang, S.Dehdashti, Z.Xu and H.Chen, “Panoramic lens designed with transformation optics”, Scientific Reports 7, 40083 (2017).
13. R.Li, X.Lin, S.Lin, X.Zhang, E.Li* and H.Chen*, "Graphene induced mode bifurcation at low input power", Carbon 98, 463 (2016).
12. B.Lv*, R.Li*, J.Fu*, Q.Wu, K.Zhang, W.Chen, Z.Wang and R.Ma, "Analysis and modeling of Fano resonances using equivalent circuit elements", Scientific Reports 6, 31884 (2016).
11. C.Qian, R.Li, Y.Jiang, B.Zheng, H.Wang*, Z.Xu and H.Chen, "Transient response of a signal through a dispersive invisibility cloak", Optics Letters 41, 4911 (2016).
10.X.Lin, R.Li, F.Gao, E.Li, X.Zhang, B.Zhang and H.Chen*, "Loss induced amplification of graphene plasmons", Optics Letters 41, 681 (2016).
9. J.Fu, B.Lv*, R.Li, R.Ma, W.Chen and F.Meng, “Excitation of graphene plasmons as an analogy with the two-level system”, Physics Letters A 380, 803 (2016).
8. R.Li, X.Lin, S.Lin*, X.Liu and H.Chen*, “Atomically thin spherical shell-shaped superscatterers based on a Bohr model”, Nanotechnology 26, 505201 (2015).
7. R.Li, X.Lin, S.Lin, X.Liu and H.Chen*, “Tunable deep-subwavelength superscattering using graphene monolayers”, Optics Letters40, 1654 (2015).
6. S.Dehdashti*, R.Li, J.Liu*, F.Yu and H.Chen*, "Realization of non-linear coherent states by photonic lattices", AIP Advances 5, 067165 (2015).
5. S.Dehdashti*, R.Li, X.Liu, M.Raoofi and H.Chen*, "Role of intertwined Hamiltonian in two dimensional classical optics", Laser Physics 25, 075201 (2015).
4.R.Li, P.Li and L.Li*, "Asymmetric optical amplifier based on paritytime symmetry", Proceedings of the Romanian Academy Series A - Mathematics Physics Technical Sciences Information Science 14, 121 (2013). (ESI highly cited paper)
3.P.Li, R.Li and L.Li*, "Beam dynamics in a double-channel waveguide with gain and loss", Romanian Reports in Physics 64, 1271 (2012).
2.L.Chen, R.Li, N.Yang, D.Chen and L.Li*, “Optical modes in PTsymmetric double-channel waveguides”, Proceedings of the Romanian Academy Series A - Mathematics Physics Technical Sciences Information Science 13, 46 (2012). (ESI highly cited paper)
1.R.Li, F.Lv, L.Li* and Z.Xu, “Symmetry breaking and manipulation of nonlinear optical modes in an asymmetric double-channel waveguide”, Physical Review A 84, 033850 (2011).


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