Acta Optica Sinica, Volume. 42, Issue 2, 0223001(2022)

Mag-Optical Modulator Based on Parity-Time Symmetric Structure

Lingjun Yi and Changhong Li*
Author Affiliations
  • School of Electronic Information, Qingdao University, Qingdao, Shandong 266071, China
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    References(27)

    [1] Yang Z Y, Huang X X, Zhou Z F et al. Application of square wave magneto-optic modulation to transmitting the azimuth between equipments without mechanical connection[J]. Acta Optica Sinica, 31, 1112008(2011).

    [2] Wang S, Wang Z B, Zhang M J et al. High sensitive measurement of crystal electro-optic coefficients based on photo-elastic modulation[J]. Acta Optica Sinica, 37, 0326001(2017).

    [3] Segovia-Chaves F, Vinck-Posada H, Trabelsi Y et al. Transmittance spectrum in a one-dimensional photonic crystal with Fibonacci sequence superconductor-semiconductor[J]. Optik, 217, 164803(2020).

    [4] Pan J H, Su A, Zhao H B et al. Modulation of photonic crystal optical transmission characteristics by symmetrical double defects[J]. Infrared and Laser Engineering, 48, 158-163(2019).

    [5] Yang D Q, Liu X, Li X G et al. Photoic crystal nanobeam cavity devices for on-chip integrated silicon photonics[J]. Journal of Semiconductors, 42, 023103(2021).

    [6] Meng C J, Wei J J, Su A et al. Electro-control modulation of dual-channel filter on photonic crystal[J]. Infrared and Laser Engineering, 49, 309-313(2020).

    [7] Hu Y C, Chen H M, Zhou H T. Mach-Zehnder modulator based on photonic crystal and nanowire waveguide[J]. Journal of Infrared and Millimeter Waves, 38, 499-507(2019).

    [8] Zhou H T, Chen H M[J]. A novel compact electro-optic modulator based on photonic crystals Study on Optical Communications, 2019, 46-51.

    [9] Yan C Q, Li C H, Wan Y. Dynamic modulation of wideband slow light with continuous group index in polymer-filled photonic crystal waveguide[J]. Applied Optics, 56, 9749-9756(2017).

    [10] Liu X, Chen H M, Hu Y C. An integrated device for photonic-crystal electro-optic modulation and coarse wavelength-division multiplexing[J]. Chinese Journal of Lasers, 48, 0306002(2021).

    [11] Zhang R Y, Li P L, Gao H. Research on acousto-optic switch based on optical tamm state[J]. Acta Physica Sinica, 69, 164204(2020).

    [12] Ji H Z, Pu S L, Wang X et al. Influence of switchable magnetic field on the modulation property of nanostructured magnetic fluids[J]. Optics Communications, 285, 4435-4440(2012).

    [13] Pu S L, Chen X F, Chen Y P et al. Fiber-optic evanescent field modulator using a magnetic fluid as the cladding[J]. Journal of Applied Physics, 99, 093516(2006).

    [14] Pu S L, Chen X F, Di Z Y et al. Relaxation property of the magnetic-fluid-based fiber-optic evanescent field modulator[J]. Journal of Applied Physics, 101, 053532(2007).

    [15] Bai X K, Pu S L, Wang L W et al. Tunable magneto: optic modulation based on magnetically responsive nanostructured magnetic fluid[J]. Chinese Physics B, 20, 107501(2011).

    [16] Zhu X F, Peng Y G, Shen Y X. Parity-time symmetric acoustics[J]. Physics, 46, 740-748(2017).

    [17] Fang Y T, Zhang Y C, Wang J J. Resonance-dependent extraordinary reflection and transmission in PC-symmetric layered structure[J]. Optics Communications, 407, 255-261(2018).

    [18] Sakhdari M, Farhat M, Chen P Y. PT-symmetric metasurfaces: wave manipulation and sensing using singular points[J]. New Journal of Physics, 19, 065002(2017).

    [19] Wang Y Y, Xia J, Fang Y T. Unique non-reciprocal mode with a parity-time symmetric structure under magneto-optic effects[J]. Chinese Journal of Lasers, 45, 1213001(2018).

    [20] Wong Z J, Xu Y L, Kim J et al. Lasing and anti-lasing in a single cavity[J]. Nature Photonics, 10, 796-801(2016).

    [21] Klimov V I, Mikhailovsky A A, Xu S et al. Optical gain and stimulated emission in nanocrystal quantum dots[J]. Science, 290, 314-317(2000).

    [22] Gao J X, Wu J J. Study on the 1D photonic crystal magnetic field sensor based on magnetic fluids[J]. Laser & Infrared, 47, 1531-1534(2017).

    [23] Fan C Z, Huang J P. Second-harmonic generation with magnetic-field controllabilities[J]. Applied Physics Letters, 89, 141906(2006).

    [24] Zhang Y C, Jiang X M, Xia J et al. Tunable high sensitivity temperature sensor based on transmittance changes of parity-time symmetry structure[J]. Chinese Journal of Lasers, 45, 0710002(2018).

    [25] Govyadinov A A, Podolskiy V A, Noginov M A. Active metamaterials: sign of refractive index and gain-assisted dispersion management[J]. Applied Physics Letters, 91, 191103(2007).

    [26] Chen Y, Shi J, Liu T et al. Study on refractive index sensing property of one-dimensional mirror air gate photonic crystal[J]. Acta Optica Sinica, 34, 1116003(2014).

    [27] Fan C Z, Wang G, Huang J P. Magnetocontrollable photonic crystals based on colloidal ferrofluids[J]. Journal of Applied Physics, 103, 094107(2008).

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    Lingjun Yi, Changhong Li. Mag-Optical Modulator Based on Parity-Time Symmetric Structure[J]. Acta Optica Sinica, 2022, 42(2): 0223001

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    Paper Information

    Category: Optical Devices

    Received: Jun. 7, 2021

    Accepted: Aug. 9, 2021

    Published Online: Dec. 29, 2021

    The Author Email: Li Changhong (jiluch@126.com)

    DOI:10.3788/AOS202242.0223001

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