Photonics Research, 2019, 7 (9): 09000994, Published Online: Aug. 8, 2019   

Ultrasensitive polarization-dependent terahertz modulation in hybrid perovskites plasmon-induced transparency devices Download: 759次

Author Affiliations
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
2 State Key Laboratory of High Performance Computing, College of Computer, National University of Defense Technology, Changsha 410073, China
3 National Innovation Institute of Defense Technology, Academy of Military Sciences PLA China, Beijing 100071, China
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Junhu Zhou, Yuze Hu, Tian Jiang, Hao Ouyang, Han Li, Yizhen Sui, Hao Hao, Jie You, Xin Zheng, Zhongjie Xu, Xiang’ai Cheng. Ultrasensitive polarization-dependent terahertz modulation in hybrid perovskites plasmon-induced transparency devices[J]. Photonics Research, 2019, 7(9): 09000994.

References

[1] G. P. Neupane, K. Zhou, S. Chen, T. Yildirim, P. Zhang, Y. Lu. In-plane isotropic/anisotropic 2D van der Waals heterostructures for future devices. Small, 2019, 15: 1804733.

[2] W. Zhou, J. Chen, H. Gao, T. Hu, S. Ruan, A. Stroppa, W. Ren. Anomalous and polarization-sensitive photo-response of Td-WTe2 from visible to infrared light. Adv. Mater., 2018, 31: 1804629.

[3] J. Liu, Y. Zhou, Y. Lin, M. Li, H. Cai, Y. Liang, M. Liu, Z. Huang, F. Lai, F. Huang, W. Zheng. Anisotropic photo-response of the ultrathin GeSe nanoplates grown by rapid physical vapor deposition. ACS Appl. Mater. Interfaces, 2019, 11: 4123-4130.

[4] Z. Zhou, M. Long, L. Pan, X. Wang, M. Zhong, M. Blei, J. Wang, J. Fang, S. Tongay, W. Hu, J. Li, Z. Wei. Perpendicular optical reversal of the linear dichroism and polarized photodetection in 2D GeAs. ACS Nano, 2018, 12: 12416-12423.

[5] S. Yoo, S. Lee, Q.-H. Park. Loss-free negative-index metamaterials using forward light scattering in dielectric meta-atoms. ACS Photon., 2018, 5: 1370-1374.

[6] R. Schittny, M. Kadic, T. Buckmann, M. Wegener. Invisibility cloaking in a diffusive light scattering medium. Science, 2014, 345: 427-429.

[7] R. Macedo, T. Dumelow, R. E. Camley, R. L. Stamps. Oriented asymmetric wave propagation and refraction bending in hyperbolic media. ACS Photon., 2018, 5: 5086-5094.

[8] Y. S. Jonathan, F. Kebin, J. P. A. Willie. Zero-rank, maximum nullity perfect electromagnetic wave absorber. Adv. Opt. Mater., 2019, 7: 1801632.

[9] X. Zhao, Y. Wang, J. Schalch, G. Duan, K. Cremin, J. Zhang, C. Chen, D. R. Averitt, X. Zhang. Optically modulated ultra-broadband all-silicon metamaterial terahertz absorbers. ACS Photon., 2019, 6: 830-837.

[10] Z. Wang, B. Ai, Z. Zhou, Y. Guan, H. Möhwald, G. Zhang. Free-standing plasmonic chiral metamaterials with 3D resonance cavities. ACS Nano, 2018, 12: 10914-10923.

[11] Q. Yang, J. Gu, Y. Xu, X. Zhang, Y. Li, C. Ouyang, Z. Tian, J. Han, W. Zhang. Broadband and robust metalens with nonlinear phase profiles for efficient terahertz wave control. Adv. Opt. Mater., 2017, 5: 1601084.

[12] M. T. Nouman, J. Hwang, M. Faiyaz, G. Lee, D. Y. Noh, J.-H. Jang. Dynamic metasurface based cavity structures for enhanced absorption and phase modulation. ACS Photon., 2019, 6: 374-381.

[13] Y. Zhao, Y. Zhang, Q. Shi, S. Liang, W. Huang, W. Kou, Z. Yang. Dynamic photoinduced controlling of the large phase shift of terahertz waves via vanadium dioxide coupling nanostructures. ACS Photon., 2018, 5: 3040-3050.

[14] M. Manjappa, P. Pitchappa, N. Wang, C. Lee, R. Singh. Active control of resonant cloaking in a terahertz MEMS metamaterial. Adv. Opt. Mater., 2018, 6: 1800141.

[15] L. Cheng, Z. Jin, Z. Ma, F. Su, Y. Zhao, Y. Zhang, T. Su, Y. Sun, X. Xu, Z. Meng, Y. Bian, Z. Sheng. Mechanical terahertz modulation based on single-layered graphene. Adv. Opt. Mater., 2018, 6: 1700877.

[16] P. Pitchappa, A. Kumar, S. Prakash, H. Jani, T. Venkatesan, R. Singh. Chalcogenide phase change material for active terahertz photonics. Adv. Mater., 2019, 31: 1808157.

[17] H. Cai, Q. Huang, X. Hu, Y. Liu, Z. Fu, Y. Zhao, H. He, Y. Lu. All-optical and ultrafast tuning of terahertz plasmonic metasurfaces. Adv. Opt. Mater., 2018, 6: 1800143.

[18] Y. K. Srivastava, A. Chaturvedi, M. Manjappa, A. Kumar, G. Dayal, C. Kloc, R. Singh. MoS2 for ultrafast all-optical switching and modulation of THz Fano metaphotonic devices. Adv. Opt. Mater., 2017, 5: 1700762.

[19] A. Kumar, Y. K. Srivastava, M. Manjappa, R. Singh. Color-sensitive ultrafast optical modulation and switching of terahertz plasmonic devices. Adv. Opt. Mater., 2018, 6: 1800030.

[20] W. X. Lim, M. Manjappa, Y. K. Srivastava, L. Cong, A. Kumar, K. F. MacDonald, R. Singh. Ultrafast all-optical switching of germanium-based flexible metaphotonic devices. Adv. Mater., 2018, 30: 1705331.

[21] J. Gu, R. Singh, X. Liu, X. Zhang, Y. Ma, S. Zhang, A. S. Maier, Z. Tian, K. Azad, A. Chen, H.-T. Chen, A. Taylor, J. Han, W. Zhang. Active control of electromagnetically induced transparency analogue in terahertz metamaterials. Nat. Commun., 2012, 3: 1151.

[22] L. Cong, Y. K. Srivastava, H. Zhang, X. Zhang, J. Han, S. Ranjan. All-optical active THz metasurfaces for ultrafast polarization switching and dynamic beam splitting. Light Sci. Appl., 2018, 7: 28.

[23] H. Jung, H. Jo, W. Lee, B. Kim, H. Choi, M. S. Kang, H. Lee. Electrical control of electromagnetically induced transparency by terahertz metamaterial funneling. Adv. Opt. Mater., 2018, 7: 1801205.

[24] Z. Chen, X. Chen, L. Tao, K. Chen, M. Long, X. Liu, K. Yan, R. I. Stantchev, E. Pickwell-MacPherson, J.-B. Xu. Graphene controlled Brewster angle device for ultra-broadband terahertz modulation. Nat. Commun., 2018, 9: 4909.

[25] T.-T. Kim, H.-D. Kim, R. Zhao, S. S. Oh, T. Ha, D. S. Chung, Y. H. Lee, B. Min, S. Zhang. Electrically tunable slow light using graphene metamaterials. ACS Photon., 2018, 5: 1800-1807.

[26] M. Manjappa, Y. K. Srivastava, A. Solanki, A. Kumar, T. C. Sum, R. Singh. Hybrid lead halide perovskites for ultrasensitive photoactive switching in terahertz metamaterial devices. Adv. Mater., 2017, 29: 1605881.

[27] S. J. Kindness, N. W. Almond, B. Wei, R. Wallis, W. Michailow, V. S. Kamboj, P. Braeuniger-Weimer, S. Hofmann, H. E. Beere, D. A. Ritchie, R. Degl’Innocenti. Active control of electromagnetically induced transparency in a terahertz metamaterial array with graphene for continuous resonance frequency tuning. Adv. Opt. Mater., 2018, 6: 1800570.

[28] H. Jung, J. Koo, E. Heo, B. Cho, C. In, W. Lee, H. Jo, J. H. Cho, H. Choi, M. S. Kang, H. Lee. Electrically controllable molecularization of terahertz meta-atoms. Adv. Mater., 2018, 30: 1802760.

[29] X. Chen, S. Ghosh, Q. Xu, C. Ouyang, Y. Li, X. Zhang, Z. Tian, J. Gu, L. Liu, A. K. Azad, J. Han, W. Zhang. Active control of polarization-dependent near-field coupling in hybrid metasurfaces. Appl. Phys. Lett., 2018, 113: 061111.

[30] M. Liu, Z. Tian, X. Zhang, J. Gu, C. Ouyang, J. Han, W. Zhang. Tailoring the plasmon-induced transparency resonances in terahertz metamaterials. Opt. Express, 2017, 25: 19844-19855.

[31] L. Q. Cong, K. S. Yogesh, S. Ankur, C. S. Tze, S. Ranjan. Perovskite as a platform for active flexible metaphotonic devices. ACS Photon., 2017, 4: 1595-1601.

[32] T. W. Crothers, R. L. Milot, J. B. Patel, E. S. Parrott, J. Schlipf, P. Müller-Buschbaum, M. B. Johnston, L. M. Herz. Photon reabsorption masks intrinsic bimolecular charge-carrier recombination in CH3NH3PbI3 perovskite. Nano Lett., 2017, 17: 5782-5789.

[33] S.-F. Leung, K.-T. Ho, P.-K. Kung, V. K. S. Hsiao, H. N. Alshareef, Z. L. Wang, J.-H. He. A self-powered and flexible organometallic halide perovskite photodetector with very high detectivity. Adv. Mater., 2018, 30: 1704611.

[34] L. Najafi, B. Taheri, B. Martín-García, S. Bellani, D. D. Girolamo, A. Agresti, R. Oropesa-Nunez, S. Pescetelli, L. Vesce, E. Calabro, M. Prato, A. E. D. R. Castillo, A. D. Carlo, F. Bonaccorso. MoS2 quantum dot/graphene hybrids for advanced interface engineering of a CH3NH3PbI3 perovskite solar cell with an efficiency of over 20%. ACS Nano, 2018, 12: 10736-10754.

[35] J. Zhen, W. Zhou, M. Chen, B. Li, L. Jia, M. Wang, S. Yang. Pyridine-functionalized fullerene additive enabling coordination interactions with CH3NH3PbI3 perovskite towards highly efficient bulk heterojunction solar cells. J. Mater. Chem. A, 2019, 7: 2754-2763.

[36] M. H. Laura. Charge-carrier dynamics in organic-inorganic metal halide perovskites. Annu. Rev. Phys. Chem., 2016, 67: 65-89.

[37] D. A. Valverde-Chávez, C. S. Ponseca, C. C. Stoumpos, A. Yartsev, M. G. Kanatzidis, V. Sundström, D. G. Cooke. Intrinsic femtosecond charge generation dynamics in single crystal CH3NH3PbI3. Energy Environ. Sci., 2015, 8: 3700-3707.

[38] Q. Dong, Y. Fang, Y. Shao, P. Mulligan, J. Qiu, L. Cao, J. Huang. Electron-hole diffusion lengths > 175  μm in solution-grown CH3NH3PbI3 single crystals. Science, 2015, 347: 967-970.

[39] O. E. Semonin, G. A. Elbaz, D. B. Straus, T. D. Hull, D. W. Paley, A. M. van der Zande, J. C. Hone, I. Kymissis, C. R. Kagan, X. Roy, J. S. Owen. Limits of carrier diffusion in n-type and p-type CH3NH3PbI3 perovskite single crystals. J. Phys. Chem. Lett., 2016, 7: 3510-3518.

[40] Y. Kim, E. Yassitepe, O. Voznyy, R. Comin, G. Walters, X. Gong, P. Kanjanaboos, A. F. Nogueira, E. H. Sargent. Efficient luminescence from perovskite quantum dot solids. ACS Appl. Mater. Interfaces, 2015, 7: 25007-25013.

[41] F. Zhang, H. Zhong, C. Chen, X.-G. Wu, X. Hu, H. Huang, J. Han, B. Zou, Y. Dong. Brightly luminescent and color-tunable colloidal CH3NH3PbX3 (X = Br, I, Cl) quantum dots: potential alternatives for display technology. ACS Nano, 2015, 9: 4533-4542.

[42] Q. A. Akkerman, V. D’Innocenzo, S. Accornero, A. Scarpellini, A. Petrozza, M. Prato, L. Manna. Tuning the optical properties of cesium lead halide perovskite nanocrystals by anion exchange reactions. J. Am. Chem. Soc., 2015, 137: 10276-10281.

[43] K. Wei, T. Jiang, Z. Xu, J. Zhou, J. You, Y. Tang, H. Li, R. Chen, X. Zheng, S. Wang, K. Yin, Z. Wang, J. Wang, X. Cheng. Ultrafast carrier transfer promoted by interlayer Coulomb coupling in 2D/3D perovskite heterostructures. Laser Photon. Rev., 2018, 12: 1800128.

[44] H. Li, X. Zheng, Y. Liu, Z. P. Zhang, T. Jiang. Ultrafast interfacial energy transfer and interlayer excitons in the monolayer WS2/CsPbBr3 quantum dot heterostructure. Nanoscale, 2018, 10: 1650-1659.

[45] K. Wei, Z. J. Xu, R. Z. Chen, X. Zheng, X. A. Cheng, T. Jiang. Temperature-dependent excitonic photoluminescence excited by two-photon absorption in perovskite CsPbBr3 quantum dots. Opt. Lett., 2016, 41: 3821-3824.

[46] X. Guichuan, M. Nripan, S. L. Swee, Y. Natalia, L. Xinfeng, S. Dharani, G. Michael, M. Subodh, C. S. Tze. Low-temperature solution-processed wavelength-tunable perovskites for lasing. Nat. Mater., 2014, 13: 476-480.

[47] J. H. Heo, S. H. Im, J. H. Noh, T. N. Mandal, C. S. Lim, J. A. Chang, Y. H. Lee, H.-J. Kim, A. Sarkar, M. K. Nazeeruddin, M. Grätzel, S. Seok. Efficient inorganic-organic hybrid heterojunction solar cells containing perovskite compound and polymeric hole conductors. Nat. Photonics, 2013, 7: 486-491.

[48] W. Christian, E. E. Giles, B. J. Michael, J. S. Henry, M. H. Laura. High charge carrier mobilities and lifetimes in organolead trihalide perovskites. Energy Environ. Sci., 2014, 7: 2269.

[49] W. S. De, J. Holovsky, S. J. Moon, P. L. Per, B. Niesen, M. Ledinsky, F. J. Haug, J.-H. Yum, C. Ballif. Organometallic halide perovskites: sharp optical absorption edge and its relation to photovoltaic performance. J. Phys. Chem. Lett., 2014, 5: 1035-1039.

[50] J. Gu, R. Singh, X. Liu, X. Zhang, Y. Ma, S. Zhang, A. S. Maier, Z. Tian, K. Azad, A. Chen, H.-T. Chen, A. Taylor, J. Han, W. Zhang. Active control of electromagnetically induced transparency analogue in terahertz metamaterials. Nat. Commun., 2012, 3: 1151.

[51] H. Cho, S.-H. Jeong, M.-H. Park, Y.-H. Kim, C. Wolf, C.-L. Lee, J. H. Heo, A. Sadhanala, N. Myoung, S. Yoo, S. H. Im, R. H. Friend, T.-W. Lee. Overcoming the electroluminescence efficiency limitations of perovskite light-emitting diodes. Science, 2015, 350: 1222-1225.

[52] M. M. Lee, J. Teuscher, T. Miyasaka, T. N. Murakami, H. J. Snaith. Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites. Science, 2012, 338: 643-647.

[53] B. Jeong, H. Han, Y. J. Choi, S. H. Cho, E. H. Kim, S. W. Lee, J. S. Kim, C. Park, D. Kim, C. Park. All-inorganic CsPbI3 perovskite phase-stabilized by poly(ethylene oxide) for red-light-emitting diodes. Adv. Funct. Mater., 2018, 28: 1706401.

[54] C. W. Singh, R. Zhang, C. J. G. Han, M. Tonouchi, W. L. Zhang. Plasmon-induced transparency in metamaterials: active near field coupling between bright superconducting and dark metallic mode resonators. Appl. Phys. Lett., 2013, 103: 101106.

[55] X. Zhang, N. Xu, K. Qu, Z. Tian, R. Singh, J. Han, W. L. Zhang. Electromagnetically induced absorption in a three-resonator metasurface system. Sci. Rep., 2015, 5: 10737.

[56] P. Tassin, L. Zhang, R. Zhao, A. Jain, T. Koschny, C. M. Soukoulis. Electromagnetically induced transparency and absorption in metamaterials: the radiating two-oscillator model and its experimental confirmation. Phys. Rev. Lett., 2012, 109: 187401.

[57] A. S. Roberts, D. Wang, D. Fei, D. Wang, P. K. Kristensen, S. I. Bozhevolnyi, K. Pedersen. Multilayer tungsten-alumina-based broadband light absorbers for high-temperature applications. Opt. Mater. Express, 2016, 6: 2704-2714.

[58] C. Laovorakiat, J. M. Kadro, T. Salim, D. Zhao, T. Ahmed, Y. M. Lam, J. X. Zhu, R. A. Marcus, M. E. Michel-Beyerle, E. E. M. Chia. Phonon mode transformation across the orthohombic-tetragonal phase transition in a lead-iodide perovskite CH3NH3PbI3: a terahertz time-domain spectroscopy approach. J. Phys. Chem. Lett., 2016, 7: 1-6.

[59] M. Bokdam, T. Sander, A. Stroppa, S. Picozzi, D. D. Sarma, C. Franchini, G. Kresse. Role of polar phonons in the photo excited state of metal halide perovskites. Sci. Rep., 2016, 6: 28618.

[60] C. La-o-vorakiat, L. Cheng, T. Salim, R. A. Marcus, M. E. M. Beyerle, Y. M. Lam, E. E. M. Chia. Hybrid tandem quantum dot/organic photovoltaic cells with complementary near infrared absorption. Appl. Phys. Lett., 2017, 110: 123901.

[61] M. R. Shcherbakov, S. Liu, V. V. Zubyuk, A. Vaskin, P. P. Vabishchevich, G. Keeler, T. Pertsch, T. V. Dolgova, I. Staude, I. Brener, A. A. Fedyanin. Ultrafast all-optical tuning of direct-gap semiconductor metasurfaces. Nat. Commun., 2017, 8: 17.

[62] Y. K. Srivastava, M. Manjappa, L. Cong, H. N. S. Krishnamoorthy, V. Savinov, P. Pitchappa, R. Singh. A superconducting dual-channel photonic switch. Adv. Mater., 2018, 30: 1801257.

Junhu Zhou, Yuze Hu, Tian Jiang, Hao Ouyang, Han Li, Yizhen Sui, Hao Hao, Jie You, Xin Zheng, Zhongjie Xu, Xiang’ai Cheng. Ultrasensitive polarization-dependent terahertz modulation in hybrid perovskites plasmon-induced transparency devices[J]. Photonics Research, 2019, 7(9): 09000994.

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