Chinese Optics Letters, Volume. 21, Issue 1, 010003(2023)
Effects of propagation phase on the coupling of plasmonic optical modes
[1] S. Fan, W. Suh, J. D. Joannopoulos. Temporal coupled-mode theory for the Fano resonance in optical resonators. J. Opt. Soc. Am. A, 20, 569(2003).
[2] W. Suh, W. Zheng, S. Fan. Temporal coupled-mode theory and the presence of non-orthogonal modes in lossless multimode cavities. IEEE J. Quantum Electron., 40, 1511(2004).
[3] K. Ding, G. Ma, M. Xiao, Z. Zhang, C. T. Chan. Emergence, coalescence, and topological properties of multiple exceptional points and their experimental realization. Phys. Rev. X, 6, 021007(2016).
[4] B. Yang, T. Liu, H. Guo, S. Xiao, L. Zhou. High-performance meta-devices based on multilayer meta-atoms: interplay between the number of layers and phase coverage. Sci. Bull., 64, 823(2019).
[5] C. Qu, S. Ma, J. Hao, M. Qiu, X. Li, S. Xiao, Z. Miao, N. Dai, Q. He, S. Sun, L. Zhou. Tailor the functionalities of metasurfaces based on a complete phase diagram. Phys. Rev. Lett., 115, 235503(2015).
[6] W. Huang, J. Lin, M. Qiu, T. Liu, Q. He, S. Xiao, L. Zhou. A complete phase diagram for dark-bright coupled plasmonic systems: applicability of Fano’s formula. Nanophotonics, 9, 3251(2020).
[7] C. Hsu, B. G. Delacy, S. G. Johnson, J. D. Joannopoulos, M. Soljačić. Theoretical criteria for scattering dark states in nanostructured particles. Nano Lett., 14, 2783(2014).
[8] S. Hayashi, D. V. Nesterenko, Z. Sekkat. Fano resonance and plasmon-induced transparency in waveguide-coupled surface plasmon resonance sensors. Appl. Phys. Express, 8, 022201(2017).
[9] S. Xia, X. Zhai, L. Wang, S. Wen. Plasmonically induced transparency in in-plane isotropic and anisotropic 2D materials. Opt. Express, 28, 7980(2020).
[10] X. Yin, X. Zhang. Unidirectional light propagation at exceptional points. Nat. Mater., 12, 175(2013).
[11] C. Wang, W. R. Sweeney, A. D. Stone, L. Yang. Coherent perfect absorption at an exceptional point. Science, 373, 1261(2021).
[12] H. Chen, T. Liu, H. Luan, R. Liu, X. Wang, X. Zhu, Y. Li, Z. Gu, S. Liang, H. Gao, L. Ge, S. Zhang, J. Zhu, R. Ma. Revealing the missing dimension at an exceptional point. Nat. Phys., 16, 571(2020).
[13] Q. Song, M. Odeh, J. Zúñiga-Pérez, B. Kanté, P. Genevet. Plasmonic topological metasurface by encircling an exceptional point. Science, 373, 1133(2022).
[14] M. A. Miri, A. Alù. Exceptional points in optics and photonics. Science, 363, 42(2019).
[15] C. W. Hsu, B. Zhen, J. Lee, S. Chua, S. Johnson, J. Joannopoulos, M. Soljačić. Observation of trapped light within the radiation continuum. Nature, 499, 188(2013).
[16] B. Zhen, C. W. Hsu, L. Lu, A. Stone, M. Soljačić. Topological nature of optical bound states in the continuum. Phys. Rev. Lett., 113, 257401(2014).
[17] J. R. Piper, S. Fan. Total absorption in a graphene monolayer in the optical regime by critical coupling with a photonic crystal guided resonance. ACS Photonics, 1, 347(2014).
[18] X. Yin, J. Jin, M. Soljačić, C. Peng, B. Zhen. Observation of topologically enabled unidirectional guided resonances. Nature, 580, 467(2020).
[19] J. Doppler, A. Mailybaev, J. Böhm, U. Kuhl, A. Girschik, F. Libisch, T. J. Miburn, P. Rabl, N. Moiseyev, S. Rotter. Dynamically encircling an exceptional point for asymmetric mode switching. Nature, 537, 76(2016).
[20] S. Romano, G. Zito, S. Yépez, S. Cabrini, E. Penzo, G. Coppola, I. Rendina, V. Mocella. Tuning the exponential sensitivity of a bound-state-in-continuum optical sensor. Opt. Express, 27, 18776(2019).
[21] J. Park, A. Ndao, W. Cai, L. Hsu, A. Kodigala, T. Lepetit, Y. Lo, B. Kanté. Symmetry-breaking-induced plasmonic exceptional points and nanoscale sensing. Nat. Phys., 16, 462(2020).
[22] W. Chen, S. Özdemir, G. Zhao, J. Wiersig, L. Yang. Exceptional points enhance sensing in an optical microcavity. Nature, 548, 192(2017).
[23] H. Hodaei, A. Hassan, S. Wittek, H. Garcia-Gracia, R. Ei-Ganainy, D. N. Christodoulides, M. Khajavikhan. Enhanced sensitivity at higher-order exceptional points. Nature, 548, 187(2017).
[24] Y. H. Lai, Y. K. Lu, M. G. Suh, Z. Yuan, K. Vahala. Observation of the exceptional-point-enhanced Sagnac effect. Nature, 576, 65(2019).
[25] A. C. Overvig, S. A. Mann, A. Alù. Thermal metasurfaces: complete emission control by combining local and nonlocal light-matter interactions. Phys. Rev. X, 11, 021050(2021).
[26] Y. Jia, M. Qiu, H. Cui, S. Fan, Z. Ruan. Theory of half-space light absorption enhancement for leaky mode resonant nanowires. Nano Lett., 15, 5513(2015).
[27] Y. Guo, M. Xiao, S. Fan. Topologically protected complete polarization conversion. Phys. Rev. Lett., 119, 167401(2017).
[28] S. Assawaworrarit, X. Yu, S. Fan. Robust wireless power transfer using a nonlinear parity-time-symmetric circuit. Nature, 546, 387(2017).
[29] D. Miller, L. Zhu, S. Fan. Universal modal radiation laws for all thermal emitters. Proc. Natl. Acad. Sci., 114, 4336(2017).
[30] Z. Zhao, C. Guo, S. Fan. Connection of temporal coupled-mode-theory formalisms for a resonant optical system and its time-reversal conjugate. Phys. Rev. A, 99, 033839(2019).
[31] J. Lin, M. Qiu, X. Zhang, H. Guo, Q. Cai, S. Xiao, Q. He, L. Zhou. Tailoring the lineshapes of coupled plasmonic systems based on a theory derived from first principles. Light Sci. Appl., 9, 158(2020).
[32] L. Fan, Z. Zhao, R. W. Jin, M. Orenstein, S. Fan. Lineshape study of optical force spectra on resonant structures. Opt. Express, 30, 6142(2022).
[33] Q. Li, X. Cai, T. Liu, M. Jia, Q. Wu, H. Zhou, H. Liu, Q. Wang, X. Ling, C. Chen, F. Ding, Q. He, Y. Zhang, S. Xiao, L. Zhou. Gate-tuned graphene meta-devices for dynamically controlling terahertz wavefronts. Nanophotonics, 11, 2085(2022).
[34] P. A. Shafirin, V. V. Zubyuk, A. A. Fedyanin, M. R. Shcherbakov. Nonlinear response of Q-boosting metasurfaces beyond the time-bandwidth limit. Nanophotonics, 11, 4053(2022).
[35] S. H. Mousavi, A. B. Khanikaev, J. Allen, M. Allen, G. Shvets. Gyromagnetically induced transparency of metasurfaces. Phys. Rev. Lett., 112, 117402(2014).
[36] Y. Choi, C. Hahn, J. W. Yoon, S. H. Song. Observation of an anti-PT-symmetric exceptional point and energy-difference conserving dynamics in electrical circuit resonators. Nat. Commun., 9, 2182(2018).
[37] R. D. Kekatpure, E. S. Barnard, W. Cai, M. L. Brongersma. Phase-coupled plasmon-induced transparency. Phys. Rev. Lett., 104, 243902(2010).
[38] S. Soleymani, Q. Zhong, M. Mokim, S. Rotter, R. EI-Ganainy, K. Özdemir. Chiral and degenerate perfect absorption on exceptional surfaces. Nat. Commun., 13, 599(2022).
[39] W. Huang, C. Zhu, M. Wang, K. Li, J. Shi, F. Zhang. Plasmon-induced transparency in ring-bar meta-atom. AIP Adv., 8, 035202(2018).
[40] J. Yang, C. Qian, X. Xie, K. Peng, S. Wu, F. Song, S. Sun, J. Dang, Y. Yu, S. Shi, J. He, M. J. Steer, I. G. Thayne, B. Li, F. Bo, Y. Xiao, Z. Zuo, K. Jin, C. Gu, X. Xu. Diabolical points in coupled active cavities with quantum emitters. Light Sci. Appl., 9, 6(2020).
[41] W. Huang, X. Zhang, Q. Wang, M. Wang, C. Li, K. Li, X. Yang, J. Shi. Controllability of surface plasmon polaritions far field radiation using metasurface. Photonics Res., 7, 728(2019).
[42] M. Horák, V. Křápek, M. Hrtoň, A. Konečná, F. Ligmajer, M. Stöger-Pollach, T. Šamořil, A. Paták, Z. Édes, O. Metelka, J. Babocký, T. Šikola. Limits of Babinet’s principle for solid and hollow plasmonic antennas. Sci. Rep., 9, 4004(2019).
[43] M. Born, E. Wolf. Principles of Optics(1999).
Get Citation
Copy Citation Text
Wanxia Huang, Yabo Zhang, Yuan Pei, Maosheng Wang, Fenghua Shi, Kuanguo Li, "Effects of propagation phase on the coupling of plasmonic optical modes," Chin. Opt. Lett. 21, 010003 (2023)
Special Issue: SPECIAL ISSUE ON OPTICAL METASURFACES: FUNDAMENTALS AND APPLICATIONS
Received: Aug. 20, 2022
Accepted: Oct. 13, 2022
Posted: Oct. 14, 2022
Published Online: Nov. 16, 2022
The Author Email: Wanxia Huang (kate@mail.ahnu.edu.cn)