1. Landy, N. I., S. Sajuyigbe, J. J. Mock, D. R. Smith, and W. J. Padilla, "Perfect metamaterial absorber," Phys. Rev. Lett., Vol. 100, 207402, 2008.
doi:10.1103/PhysRevLett.100.207402 Google Scholar
2. Yoo, Y. J., Y. J. Kim, J. S. Hwang, J. Y. Rhee, K. W. Kim, Y. H. Kim, H. Cheong, L. Y. Chen, and Y. P. Lee, "Triple-band perfect metamaterial absorption, based on single cut-wire bar," Appl. Phys. Lett., Vol. 106, 071105, 2015.
doi:10.1063/1.4913243 Google Scholar
3. Khuyen, B. X., B. S. Tung, N. V. Dung, Y. J. Yoo, Y. J. Kim, K.W. Kim, V. D. Lam, J. G. Yang, and Y. Lee, "Size-efficient metamaterial absorber at low frequencies: Design, fabrication, and characterization," J. Appl. Phys., Vol. 117, 243105, 2015.
doi:10.1063/1.4923053 Google Scholar
4. Agarwal, M., A. K. Behera, and M. K. Meshram, "Dual resonating C-band with enhanced bandwidth and broad X-band metamaterial absorber," Appl. Phys. A, Vol. 122, 166, 2016.
doi:10.1007/s00339-016-9705-7 Google Scholar
5. Bhattacharyya, S., S. Ghosh, D. Chaurasiya, and K. Srivastava, "Wideangle broadband microwave metamaterial absorber with octave bandwidth," IET Microwaves, Antennas Propag., Vol. 9, 1160-1166, 2015.
doi:10.1049/iet-map.2014.0632 Google Scholar
6. Sood, D. and C. C. Tripathi, "A wideband ultrathin low profile metamaterial microwave absorber," Microw. Opt. Technol. Lett., Vol. 57, 2723-2728, 2015.
doi:10.1002/mop.29428 Google Scholar
7. Yin, S., J. Zhu, W. Jiang, J. Yuan, G. Yin, and Y. Ma, "Comment on ``Triple-band perfect metamaterial absorption, based on single cut-wire bar [Appl. Phys. Lett., Vol. 106, 071105, 2015]''," Appl. Phys. Lett., Vol. 107, 026101, 2015.
doi:10.1063/1.4926930 Google Scholar
8. Liu, L., S. Liu, H. Zhang, X. Kong, H. Yang, G. Ding, C. Xu, L. Wang, and W. Shi, "Comment on ``Size-efficient metamaterial absorber at low frequencies: Design, fabrication, and characterization [J. Appl. Phys., Vol. 117, 243105, 2015]''," J. Appl. Phys., Vol. 119, 226101, 2016.
doi:10.1063/1.4953232 Google Scholar
9. Li, B., Q. Chen, Y. Fu, et al. "Comment on ``Dual resonating C-band with enhanced bandwidth and broad X-band metamaterial absorber''," Appl. Phys. A, Vol. 122, 166, 2016. Google Scholar
10. Kundu, D., A. Mohan, and A. Chakraborty, "Comment on ``Wide-angle broadband microwave metamaterial absorber with octave bandwidth''," IET Microwaves, Antennas Propag., Sep. 2016. Google Scholar
11. Tian, D., H. Shi, and A. Zhang, "Comment on ``A wideband ultrathin low profile metamaterial microwave absorber''," Microw. Opt. Technol. Lett., Vol. 58, 1773-1774, 2016.
doi:10.1002/mop.29897 Google Scholar
12. Sood, D. and C. C. Tripathi, "A wideband wide-angle ultra-thin metamaterial microwave absorber," Progress In Electromagnetics Research M, Vol. 44, 39-46, 2015.
doi:10.2528/PIERM15082903 Google Scholar
13. Lina, B., B. Wang, W. Meng, X. Da, W. Li, Y. Fang, and Z. Zhu, "Dual-band high-efficiency polarization converter using an anisotropic metasurface," J. of Appl. Phy., Vol. 119, 183103, 2016.
doi:10.1063/1.4948957 Google Scholar