top of page

[1] Z. Li*, L. L. Liu, B. Z. Xu, P. P. Ning, C. Chen, J. Xu , X. L. Chen , C. Q. Gu, Q. Qing, "High-Contrast Gratings based Spoof Surface Plasmons", Scientific Reports, 6, 21199, 2016 (IF:5.578) (web, pdf)


[2] Z. Li*, B. Z. Xu, L. L. Liu, J. Xu, C. Chen, P. P. Ning, X. L. Chen and C. Q. Gu,"Localized Spoof Surface Plasmons based on Subwavelength Closed High Contrast Gratings: Concept and Microwave-Regime Realizations", Scientific Reports, 6, 27158, 2016 (IF:5.578) (web, pdf)


[3] Z. Li*, J. Xu, C. Chen, Y. H. Sun, B. Z. Xu, L. L. Liu, C. Q. Gu, "Coplanar waveguide wideband band-stop filter based on localized spoof surface plasmons", Applied Optics, Vol.55, Issue 36, pp.10323-10328,2016. (web, pdf)


[4] L. L. Liu, Z. Li*, B. Z. Xu, P. P. Ning, C. Chen, J. Xu , X. L. Chen , C. Q. Gu,"Deep-subwavelength Guiding and Superfocusing of Spoof Surface Plasmon Polaritons on Helically Grooved Metal Wire", Plasmonics, Vol.11, Issue 2, pp.359-364,2016 (IF:2.238) (web, pdf)


[5] J. Xu, Z. Li*, L. L. Liu, C. Chen, B. Z. Xu, P. P. Ning, C. Q. Gu,"Low-pass plasmonic filter and its miniaturization based on spoof surface plasmon polaritons", Optics Communications 372(2016)155–159(IF:1.449) (web, pdf)


[6] B. Z. Xu, Z. Li*, L. L. Liu, J. Xu, C. Chen and C. Q. Gu,"Bandwidth tunable microstrip bandstop filters based on localized spoof surface plasmons",Journal of the Optical Society of America B 33(7), 1388-1391 (2016) (IF:1.97) (web, pdf)


[7] X. L. Chen, C. Q. Gu, Z. Li, Z. Y. Niu,"Sparsified Multilevel Adaptive Cross Approximation-Characteristic Basis Function Method for Efficient Iterative Solution of Electromagnetic Scattering", Electromagnetics 36(7):457-469, 2016 (web, pdf)


[8] C. Fei, X. L. Chen*, Z. Li, Z. Y. Niu, C. Q. Gu, "A Hybrid Method to Accelerate the Calculation of Two-Dimensional Monostatic Radar Cross Section on PEC Targets", Progress In Electromagnetics Research M 50, 47-54, 2016 (web, pdf)


[9] X. L. Chen, C. Q. Gu, Z. Li, Z. Y. Niu, “Accelerated Direct Solution of Electromagnetic Scattering via Characteristic Basis Function Method With Sherman-Morrison-Woodbury Formula-Based Algorithm”, IEEE Transaction on Antennas and Propagation, vol. 64, no. 10, 4482-4486, 2016. (web, pdf)


[10] Y. Zhang, X. L.. Che, C. Fei, Z. Li, C. Q. Gu,"Fast direct solution of composite conducting-dielectric arrays using sherman-morrison-woodbury algorithm",Progress In Electromagnetics Research M 49:203-209, 2016 (web, pdf)


[11] X. L. Chen, C. Fei, Y. Zhang, Z. Li, C. Q. Gu,"Fast Iterative Solution of EFIE Using ACA Algorithm With Sherman-Morrison-Woodbury Formula-Based Preconditioner", IEICE Electronics Express 14(8):1-9, 2016 (web, pdf)


[12] X. L. Chen, C. Q. Gu, A. Heldring, Z Li and Q. S. Cao, "Error Bound of the Multilevel Adaptive Cross Approximation (MLACA)," IEEE Transaction on Antennas and Propagation, vol. 64, no. 1, 374-378, 2016. (web, pdf)

bottom of page