代表性论文
1. Q. Shen, X. D. Zheng, H. Zhang, Y. You, and Linfang Shen, “Large-area unidirectional surface magnetoplasmons using uniaxial μ-near-zero material”, Optics Letters 46, 5978 (2021).
2. Q. Shen, Y. You, J. Xu, Y. Shen, X. H. Deng, Z. Y. Wang, W. D. Min, L. F. Shen, and S. Xiao, “Mechanically scanned leaky-wave antenna based on a topological one-way waveguide”, Frontiers of Physics 15, (33601) 2020.
3. J. Xu, S. Xiao, C.-H. Wu, H. Zhang, X. H. Deng, and L. F. Shen, “Broadband one-way propagation and rainbow trapping of terahertz radiations”, Optics Express 27, 10659 (2019).
4. C.-H. Wu, L. F. Shen, H. Zhang, J. H. Yan, D.- J. Hou, G. B. Zhou, and Y. L. Wu, “Equivalent circuit parameters of planar transmission lines with spoof surface plasmon polaritons and its application in high density circuits”, Scientific Reports 9, 18853 (2019).
5. Y. You, P. Goncalves, L. F. Shen, M. Wubs, X. H. Deng, and S. Xiao, “Magnetoplasmons in monolayer black phosphorus structures”, Optics Letters 44, 554 (2019).
6. Q. Shen, L. J. Hong, X. H. Deng, and L. F. Shen, “Completely stopping microwaves with extremely enhanced magnetic fields”, Scientific Reports 8, 15811 (2018).
7. L. J. He, J. Xu, Y. You, T. B. Yu, L. F. Shen, and X. H. Deng, “One-way edge modes in a photonic crystal of semiconductor at terahertz frequencies”, Scientific Reports 8, 8165 (2018).
8. K. L. Tsakmakidis, L. F. Shen (共同第一作者), S. A. Schulz, X. Zheng, J. Upham, X. H. Deng, H. Altug, A. F. Vakakis, R. W. Boyd, “Breaking Lorentz reciprocity to overcome the time-bandwidth limit in physics and engineering”, Science 356 (6344), 1260–1264 (2017).
9. L. F. Shen, X. D. Zheng, and X. H. Deng, “Stopping terahertz radiation without backscattering over a broad band”, Optics Express 23, 11790 (2015)
10. L. F. Shen, Z. Y. Wang, X. H. Deng, J.-J. Wu, and T. –J. Yang, “Complete trapping of electromagnetic radiation using surface magnetoplasmons”, Optics Letters 40, 1853 (2015).
11. L. F. Shen, Y. You, Z. Y. Wang, and X. H. Deng, “Backscattering-immune one-way surface magnetoplasmons at terahertz frequencies”, Optics Express 23, 950 (2015).
12. J.-J. Wu, D. –J. Hou, K. X. Liu, and L. F. Shen, et al., “ Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons”, Optics Express 22, 26777 (2014).
13. X. Li, T. Jiang, L. F. Shen, and X. H. Deng, “Subwavelength guiding of channel plasmon polaritons by textured metallic grooves at telecom wavelengths”, Applied Physics Letters 102, 031606 (2013).
14. K. X. Liu, L. F. Shen, and S. He, “One-way edge mode in a gyromagnetic photonic crystal slab”, Optics Letters 37, 4110 (2012).
15. T. Jiang, L. F. Shen, J.-J. Wu, T.-J. Yang, Z. Ruan, and L. X. Ran, “Realization of tightly confined channel plasmon polaritons at low frequencies”, Applied Physics Letters 99, 261103 (2011).
16. L. F. Shen, X. D. Chen, X. F. Zhang, and L. Pan, “Blue-shifted contra-directional coupling between a periodic and conventional dielectric waveguides,” Optics Express 18, 9341 (2010).
17. L. F. Shen and S. S. Xiao, “Reply to “Comment on “Stability and quality factor of a one-dimensional subwavelength cavity resonator containing a left-handed material”, Physical Review B 79, 207102 (2009).
18. W. Yan, L. F. Shen, “Open waveguide cavity using a negative index medium”, Optics Letters 33, 2806 (2008).
19. L. F. Shen, J.-J. Wu, and T.-J. Yang, “Anisotropic medium with parabolic dispersion”, Applied Physics Letters 92, 261905 (2008).
20. L. F. Shen, T.-J. Yang, and Y.-F. Chau, “Effect of internal period on the optical dispersion of indefinite-medium materials”, Physical Review B 77, 205124 (2008).
21. Y. Yuan, L. F. Shen, L. X. Ran, T. Jiang, J. T. Huangfu, and J. A. Kong, “Directive emission based on anisotropic metamaterials”, Physical Review A 77, 053821 (2008).
22. L. F. Shen, X. D. Chen, Y. Zhong, and K. Agarwal, “Effect of absorption on terahertz surface plasmon polaritons propagating along periodically corrugated metal wires”, Physical Review B 77, (075408) 2008.
23. L. F. Shen, X. D. Chen, and T. J. Yang, “Terahertz surface plasmon polaritons on periodically corrugated metal surfaces”,Optics Express 16, 3326 (2008).
24. D. R. Chen, T.-J. Yang, J.-J. Wu, L. F. Shen, K.-L. Liao, and S. He, “Band-rejection fiber filter and fiber sensor based on a Bragg fiber of transversal resonant structure”, Optics Express 16, 16489 (2008).
25. L. F. Shen, T.-J. Yang, and Y.-F. Chau, “A 50/50 beam splitter using a one-dimensional metal photonic crystal with a parabola-like dispersion behavior”,Applied Physical Letters 90, 251909 (2007).
26. J. Zhang, H.S. Chen, Y. Luo, Y. Yuan, L. F. Shen, L. X. Ran, and J. A. Kong, Wideband backward coupling based on anisotropic left-handed metamaterial, Applied Physics Letters 90, 043506 (2007).
27. H. F. Zhang, L. F. Shen, et al, “Layered superlensing in two-dimensional photonic crystals”, Optics Express 14, 11178 (2006).
28. L. F. Shen, S. He, and S. S. Xiao, “Stability and quality factor of a one-dimensional subwavelength cavity resonator containing a left-handed material”, Physical Review B 69, 115111 (2004).
29. L. Chen, S. L. He, and L. F. Shen, “Finite-size effects of a left-handed material slab on the image quality”, Physical Review Letters 92, 107404 (2004).
30. L. F. Shen, Z. Ye, and S. He, “Design of two-dimensional photonic crystals with large absolute band gaps using a genetic algorithm”, Physical Review B 68, 035109 (2003).
31. L. Wu, S. He, and L. F. Shen, “Band structure for a one-dimensional photonic crystal containing left-handed materials”, Physical Review B 67, 235103 (2003).
32. L. F. Shen, S. He, and S. S. Xiao, “Large absolute band gaps in two-dimensional photonic crystals formed by large dielectric pixels”, Physical Review B 66, 165315 (2002).