Journal of Synthetic Crystals, Volume. 51, Issue 11, 1830(2022)

A Theoretical Study of Bandwidth Tunable Light Source by Frequency Doubling of Trapezoidal PPMgLN Waveguide

CHEN Jiaying1,2,3、*, ZHANG Xinbin1,2, CHEN Huaixi1,2,3, FENG Xinkai1,2,3, CHENG Xing1,2,4, MA Lei1,2,5, and LIANG Wanguo1,2,3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
  • 5[in Chinese]
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    References(19)

    [1] [1] BOCK M, LENHARD A, CHUNNILALL C, et al. Highly efficient heralded single-photon source for telecom wavelengths based on a PPLN waveguide[J]. Optics Express, 2016, 24(21): 23992-24001.

    [2] [2] IMESHEV G, ARBORE M A, KASRIEL S, et al. Pulse shaping and compression by second-harmonic generation with quasi-phase-matching gratings in the presence of arbitrary dispersion[J]. Josa B, 2000, 17(8): 1420-1437.

    [3] [3] LANGROCK C, DIAMANTI E, ROUSSEV R V, et al. Highly efficient single-photon detection at communication wavelengths by use of upconversion in reverse-proton-exchanged periodically poled LiNbO3 waveguides[J]. Optics Letters, 2005, 30(13): 1725-1727.

    [4] [4] NISHIDA Y, MIYAZAWA H, ASOBE M, et al. 0-dB wavelength conversion using direct-bonded QPM-Zn∶LiNbO3 ridge waveguide[J]. IEEE Photonics Technology Letters, 2005, 17(5): 1049-1051.

    [5] [5] TANZILLI S, TITTEL W, DE RIEDMATTEN H, et al. PPLN waveguide for quantum communication[J]. The European Physical Journal D - Atomic, Molecular and Optical Physics, 2002, 18(2): 155-160.

    [7] [7] SABOURI S G, KHORSANDI A. Engineered aperiodically poled nonlinear crystal for high-power second-harmonic generation[J]. Josa B, 2016, 33(12): 2493-2501.

    [8] [8] CHOGE D, CHEN H X, XU Y B, et al. Blue and orange two-color CW laser based on single-pass second-harmonic and sum-frequency generation in MgO∶PPLN[J]. Applied Sciences, 2018, 8(4): 629.

    [9] [9] CHOGE D K, CHEN H X, GUO L, et al. Double-pass high-efficiency sum-frequency generation of a broadband orange laser in a single MgO∶PPLN crystal[J]. Optical Materials Express, 2019, 9(2): 837.

    [10] [10] CHOGE D K, CHEN H X, GUO L, et al. High power broadband orange laser by double-pass sum-frequency mixing in MgO∶PPLN[J]. Laser Physics Letters, 2019, 16(2): 025402.

    [11] [11] ZENG X L, ASHIHARA S, WANG Z J, et al. Excitation of two-colored temporal solitons in a segmented quasi-phase-matching structure[J]. Optics Express, 2009, 17(19): 16877-16884.

    [12] [12] CHOGE D K, CHEN H X, XU Y B, et al. Broadening of the sum-frequency phase-matching bandwidth by temperature gradient in MgO∶PPLN[J]. Applied Optics, 2018, 57(19): 5459-5463.

    [13] [13] GUO W, CHEN H X, ZHANG X B, et al. Broadband second-harmonic generation in a tapered PPLN waveguide[J]. Optoelectronics Letters, 2020, 16(4): 252-255.

    [14] [14] DRISCOLL J B, OPHIR N, GROTE R R, et al. Width-modulation of Si photonic wires for quasi-phase-matching of four-wave-mixing: experimental and theoretical demonstration[J]. Optics Express, 2012, 20(8): 9227-9242.

    [15] [15] XIONG X, ZOU C L, GUO X, et al. Broadband frequency conversion and “area law” in tapered waveguides[J]. OSA Continuum, 2018, 1(4): 1349.

    [16] [16] KIM B M, SON H W, CHO Y K, et al. Transmission-line analysis of an epsilon near zero tunneling circuit using a double ridge rectangular waveguide[J]. Journal of the Korean Physical Society, 2014, 65(5): 625-630.

    [17] [17] DWARI S, CHAKRABORTY A, SANYAL S. Analysis of linear tapered waveguide by two approaches[J]. Progress in Electromagnetics Research, 2006, 64: 219-238.

    [18] [18] MU J W, HUANG W P. Complex coupled-mode theory for tapered optical waveguides[J]. Optics Letters, 2011, 36(6): 1026-1028.

    [19] [19] CHUNG Y, DAGLI N. An assessment of finite difference beam propagation method[J]. IEEE Journal of Quantum Electronics, 1990, 26(8): 1335-1339.

    [20] [20] MAKINO S, SATO T, ISHIZAKA Y, et al. Three-dimensional finite-element time-domain beam propagation method and its application to 1-D photonic crystal-coupled resonator optical waveguide[J]. Journal of Lightwave Technology, 2015, 33(18): 3836-3842.

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    CHEN Jiaying, ZHANG Xinbin, CHEN Huaixi, FENG Xinkai, CHENG Xing, MA Lei, LIANG Wanguo. A Theoretical Study of Bandwidth Tunable Light Source by Frequency Doubling of Trapezoidal PPMgLN Waveguide[J]. Journal of Synthetic Crystals, 2022, 51(11): 1830

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    Paper Information

    Category:

    Received: Jul. 19, 2022

    Accepted: --

    Published Online: Jan. 3, 2023

    The Author Email: CHEN Jiaying (395516571@qq.com)

    DOI:

    CSTR:32186.14.

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