• Chinese Optics Letters
  • Vol. 11, Issue 11, 111602 (2013)
Bo Na, Jinhui Shi, Chunying Guan, and Zhengping Wang
DOI: 10.3788/col201311.111602 Cite this Article Set citation alerts
Bo Na, Jinhui Shi, Chunying Guan, Zhengping Wang. From electromagnetically induced transparency to absorption in planar optical metamaterials[J]. Chinese Optics Letters, 2013, 11(11): 111602 Copy Citation Text show less
References

[1] N. I. Zheludev and Y. S. Kivshar, Nat. Mat. 11, 917 (2012).

[2] H. F. Ma and T. J. Cui, Nat. Comm. 1, 124 (2010).

[3] F. Falcone, T. Lopetegi, M. A. G. Laso, J. D. Baena, J. Bonache, M. Beruete, R. Marques, F. Martin, and M. Sorolla, Phys. Rev. Lett. 93, 197401 (2004).

[4] V. A. Fedotov, P. L. Mladyonov, S. L. Prosvirnin, A. V. Rogacheva, Y. Chen, and N. I .Zheludev, Phys. Rev. Lett. 97, 167401 (2006).

[5] R. Singh, E. Plum, C. Menzel, C. Rockstuhl, A. K. Azad, R. A. Cheville, F. Lederer, W. Zhang, and N. I. Zheludev, Phys. Rev. B. 80, 153104 (2009).

[6] J. H. Shi, X. C. Liu, S. W. Yu, T. T. Lv, Z. Zhu, H. F. Ma, and T. J. Cui. Appl. Phys. Lett. 102, 191905 (2013).

[7] X. Li, S. Xiao, B. Cai, Q. He, T. J. Cui, and L. Zhou, Opt. Lett. 37, 4940 (2012).

[8] E. Plum, X. -X. Liu, V. A. Fedotov, Y. Chen, D. P. Tsai, and N. I. Zheludev, Phys. Rev. Lett. 102, 113902 (2009).

[9] R. Singh, E. Plum, W. L. Zhang, and N. I. Zheludev, Opt. Express 18, 13425 (2010).

[10] N. Yu, P. Genevet, M. A. Kats, F. Aieta, J. P. Tetienne, F. Capasso, and Z. Gaburro, Science 334, 333 (2011).

[11] X. Zhang, Z. Tian, W. Yue, J. Gu, S. Zhang, J. Han, and W. Zhang, Adv. Mater. 25, 4567 (2013).

[12] X. B. Yin, Z. L. Ye, J. Rho, Y. Wang, and X. Zhang, Science 339, 1405 (2013).

[13] H. T. Chen, W. J. Padilla, J. M. O. Zide, A. C. Gossard, A. J. Taylor, and R. D. Averitt, Nature 444, 597 (2006).

[14] Q. J. Du, J. S. Liu, and H. W. Yang, Chin. Opt. Lett. 9, 110015 (2011).

[15] R. Singh, X. C. Lu, J. Q. Gu, Z. Tian, and W. L. Zhang, J. Opt. 12, 015101 (2010).

[16] D. R. Chowdhury, R. Singh, M. Reiten, J. F. Zhou, A. J. Taylor, and J. F. O’Hara, Opt. Express 19, 10679 (2011).

[17] R. Singh, C. Rockstuhl, F. Lederer, and W. L. Zhang, Appl. Phys. Lett. 94, 021116 (2009).

[18] Y. Yang, R. Huang, L. Q. Cong, Z. H. Zhu, J. Q. Gu, Z. Tian, R. Singh, S. Zhang, J. G. Han, and W. L. Zhang, Appl. Phys. Lett. 98, 121114 (2011).

[19] R. Singh, C. Rockstuhl, and W. L. Zhang, Appl. Phys. Lett. 97, 241108 (2010).

[20] I. A. I. Al-Naib, R. Singh, C. Rockstuhl, F. Lederer, S. Delprat, D. Rocheleau, M. Chaker, T. Dzaki, and R. Morandotti, Appl. Phys. Lett. 101, 071108 (2012).

[21] R. Singh, I. A. I. Al-Naib, M. Koch, and W. L. Zhang, Opt. Express 18, 13044 (2010).

[22] D. R. Chowdhury, R. Singh, M. Reiten, H. T. Chen, A. J. Taylor, J. F. O’Hara, and A. K. Azad, Opt. Express 19, 15817 (2011).

[23] Z. Tian, R. Singh, J. G. Han, J. Q. Gu, Q. R. Xing, J. Wu, and W. L. Zhang, Opt. Lett. 35, 3586 (2010).

[24] V. A. Fedotov, M. Rose, S. L. Prosvirnin, N. Papasimakis, and N. I. Zheludev, Phys. Rev. Lett. 99, 147401 (2007).

[25] S. Zhang, D.A. Genov, Y. Wang, M. Liu, and X. Zhang, Phys. Rev. Lett. 101, 047401 (2008).

[26] N. Papasimakis, V. A. Fedotov, N. I. Zheludev, and S. L. Prosvirnin, Phys. Rev. Lett. 101, 253903 (2008).

[27] S. Y. Chiam, R. Singh, C. Rockstuhl, F. Lederer, W. L. Zhang, and A. A. Bettiol, Phys. Rev. B. 80, 153103(2009).

[28] N. Liu, L. Langguth, T.Weiss, J. K¨astel, M. Fleischhauer, T. Pfau, and H. Giessen, Nat. Mater. 8, 758 (2009).

[29] C. Kurter, P. Tassin, L. Zhang, T. Koschny, A. P. Zhuravel, A. V. Ustinov, S. M. Anlage, and C. M. Soukoulis, Phys. Rev. Lett. 107, 043901 (2011).

[30] Z. Y. Li, Y. F. Ma, R. Huang, R. Singh, J. Q. Gu, Z. Tian, J. G. Han, and W. L. Zhang, Opt. Express 19, 8912 (2011).

[31] X. J. Liu, J. Q. Gu, R. Singh, Y. F. Ma, J. Zhu, Z. Tian, M. X. He, J. G. Han, and W. L. Zhang, Appl. Phys. Lett. 100, 131101 (2012).

[32] X. Q. Lu, J. H. Shi, R. Liu, and C. Y. Guan, Opt. Express 20, 17581 (2012).

[33] J. Q. Gu, R. Singh, X. J. Liu, X. Q. Zhang, Y. F. Ma, S. Zhang, S. A. Maier, Z. Tian, A. K. Azad, H. T. Chen, A. J. Taylor, J. G. Han, and W. L. Zhang, Nat. Comm. 3, 1151 (2012).

[34] L. Zhu, F. Y. Meng, J. H. Fu, Q. Wu, and J. Hua, Opt. Express 20, 4494(2012).

[35] L. Zhang, P. Tassin, T. Koschny, C. Kurter, S. M. Anlage, and C. M. Soukoulis, Appl. Phys. Lett. 97, 241904 (2010).

[36] X. Q. Zhang, Q. Li, W. Cao, J. Q. Gu, R. Singh, Z. Tian, J. G. Han, and W. L. Zhang, IEEE J. Select. Topics Quantum Electron. 19, 8400707 (2013).

[37] A. Yang, C. C. Yan, J. B. Tian, C. Wang, G. M. Li, and D. H. Zhang, Chin. Opt. Lett. 11, 051602 (2013).

[38] B. Luk’yanchuk, N. I. Zheludev, S. A. Maier, N. J. Halas, P. Nordlander, H. Giessen, and C. Chong, Nat. Mater. 9, 707 (2010).

[39] A. E. Miroshnichenko, S. Flach, and Y. S. Kivshar, Rev. Mod. Phys. 82, 2257 (2010).

[40] V. A. Fedotov, A. Tsiatmas, J. H. Shi, R. Buckingham, P. de Groot, Y. Chen, S. Wang, and N. I. Zheludev, Opt. Express 18, 9015 (2010).

[41] R. Singh, I. A. I. Al-Naib, M. Koch, and W. L. Zhang, Opt. Express 19, 6312 (2011).

[42] Y. F. Ma, Z. Y. Li, Y. M. Yang, R. Huang, R. Singh, S. Zhang, J. Q. Gu, Z. Tian, J. G. Han, and W. L. Zhang, Opt. Mat. Express 1, 391 (2011).

[43] R. Singh, I. A. I. Al-Naib, Y. P. Yang, D. R. Chowdhury, W. Cao, C. Rockstuhl, T. Ozaki, R. Morandotti, and W. L. Zhang, Appl. Phys. Lett. 99, 201107 (2011).

[44] W. Cao, R. Singh, I. A. I. Al-Naib, M. X. He, A. J. Taylor, and W. L. Zhang, Opt. Lett. 37, 3366 (2012).

[45] J. H. Shi, Z. Zhu, H. F. Ma, W. X. Jiang, and T. J. Cui, J. Appl. Phys. 112, 073522 (2012).

[46] C. Wu, A. B. Khanikaev, R. Adato, N. Arju, A. A. Yanik, H. Altug, and G. Shvets, Nat. Mater. 11, 69 (2012).

[47] R. Liu, J. H. Shi, E. Plum, V. A. Fedotov, and N. I. Zheludev, Acta Phys. Sin. 61, 154101 (2012).

[48] J. Zhao, C. Zhang, P. V. Braun, and H. Giessen, Adv. Mat. 24, OP247 (2012).

[49] R. Taubert, M. Hentschel, J. K¨astel, and H. Giessen, Nano Lett. 12, 1367 (2012).

[50] L. Verslegers, Z. Yu, Z. Ruan, P. B. Catrysse, and S. Fan, Phys. Rev. Lett. 108, 083902 (2012).

[51] P. Tassin, L. Zhang, R. K. Zhao, A. Jain, T. Koschny, and C. M. Soukoulis, Phys. Rev. Lett. 109, 187401 (2012).

[52] Y. Sun, W. Tan, L. Liang, H. T. Jiang, Z. G. Wang, F. Q. Liu, and H. Chen, Europhys. Lett. 98, 64007 (2012).

[53] Y. Lu, H. Xu, J. Y. Rhee, W. H. Jang, B. S. Ham, and Y. P. Lee, Phys. Rev. B 82, 195112 (2010).

[54] R. Singh, C. Rockstuhl, F. Lederer, and W. L. Zhang, Phys. Rev. B. 79, 085111 (2009).

[55] I. Al-Naib, R. Singh, M. Shalaby, T. Ozaki, and R. Morandotti, IEEE J. Select. Topics Quantum Electron. 19, 8400807 (2013).

[56] D. R. Chowdhury, R. Singh, A. J. Taylor, H. -T. Chen, and A. K. Azad, Appl. Phys. Lett. 102, 011122 (2013).

[57] X. Q. Zhang, Q. Li, W. Cao, W. S. Yue, J. Q. Gu, Z. Tian, J. G. Han, and W. L. Zhang, Chin. Opt. Lett. 9, 110012 (2011).

[58] J. H. Shi, R. Liu, B. Na, Y. Q. Xu, Z. Zhu, Y. K.Wang, H. F. Ma, and T. J. Cui, Appl. Phys. Lett. 103, 071906 (2013).

[59] J. Shao, J. Q. Li, J. Li, Y. K. Wang, Z. G. Dong, P. Chen, R. X. Wu, and Y. Zhai, Appl. Phys. Lett. 102, 034106 (2013).

[60] P. Tassin, L. Zhang, T. Koschny, E. N. Economou, and C. M. Soukoulis, Phys. Rev. Lett. 102, 053901 (2009).

[61] K. Aydin, I. M. Pryce, and H. A. Atwater, Opt. Express 18, 13407 (2010).

CLP Journals

[1] Guoxing Zheng, Zile Li, Guishan Yuan, Ruiying Zhang, Ping'an He, Xiaochun Dong, Jun Cui, Jiangnan Zhao, Jianping Yun, Song Li. Focusing microwaves into subwavelength dimensions with a half-cylindrical hyperlens based on split ring resonators[J]. Chinese Optics Letters, 2014, 12(8): 081602

[2] Qiannan Wu, Feng Lan, YaXin Zhang, HongXin Zeng, Ziqiang Yang, Xi Gao. Polarization insensitivity in square split-ring resonators with asymmetrical arm widths[J]. Chinese Optics Letters, 2015, 13(10): 101601

[3] Cheng Wang, Changchun Yan, Jiebing Tian, Ying Han, Rongyuan Zou, Dongdong Li, Daohua Zhang. Actively tunable metamaterial resonators based on colossal magnetoresistance in the infrared regime[J]. Chinese Optics Letters, 2015, 13(5): 051601

Data from CrossRef

[1] Xiaoqing Zhao, Bin Yang, Jingquan Liu, Prakash Pitchappa, Dihan Hasan, Chong Pei Ho, Chunsheng Yang, Chengkuo Lee. A multiband flexible terahertz metamaterial with curvature sensing functionality. Journal of Optics, 18, 075101(2016).

[2] Liren Zheng, Xiuyun Sun, Hua Xu, Yuehui Lu, YoungPak Lee, Joo Yull Rhee, Weijie Song. Strain Sensitivity of Electric-Magnetic Coupling in Flexible Terahertz Metamaterials. Plasmonics, 10, 1331(2015).

[3] Wudeng Wang, Yudong Li, Pengwei Xu, Zongqiang Chen, Jing Chen, Jun Qian, Jiwei Qi, Qian Sun, Jingjun Xu. Polarization-insensitive plasmonic-induced transparency in planar metamaterial consisting of a regular triangle and a ring. Journal of Optics, 16, 125013(2014).

[4] Jun Wu. Selective absorption and emission from a stacked subwavelength and Bragg grating backed with metal film. Optics Communications, 355, 246(2015).

[5] Ningning Xu, Manukumara Manjappa, Ranjan Singh, Weili Zhang. Tailoring the Electromagnetically Induced Transparency and Absorbance in Coupled Fano-Lorentzian Metasurfaces: A Classical Analog of a Four-Level Tripod Quantum System. Advanced Optical Materials, 4, 1179(2016).

Bo Na, Jinhui Shi, Chunying Guan, Zhengping Wang. From electromagnetically induced transparency to absorption in planar optical metamaterials[J]. Chinese Optics Letters, 2013, 11(11): 111602
Download Citation