Visible and near-IR entangled photon generation and UV second harmonic generation with lithium niobate nanophotonic waveguides for on-chip spectroscopy

被引:0
|
作者
Hwang, Emily Y. [1 ]
Harper, Nathan A. [2 ]
Sekine, Ryoto [3 ]
Ledezma, Luis [3 ]
Marandi, Alireza [1 ,3 ]
Cushing, Scott K. [2 ]
机构
[1] CALTECH, Dept Appl Phys & Mat Sci, Pasadena, CA 91125 USA
[2] CALTECH, Div Chem & Chem Engn, Pasadena, CA 91125 USA
[3] CALTECH, Dept Elect Engn, Pasadena, CA 91125 USA
基金
美国国家科学基金会;
关键词
nonlinear photonics; spontaneous parametric downconversion; ultraviolet second harmonic generation; thin-film lithium niobate; visible and near-IR photon pair production; INTEGRATED PHOTONICS; NONLINEAR OPTICS; ULTRAVIOLET; LIGHT; FIBER; FLUORESCENCE; TEMPERATURE; ABSORPTION; CONVERSION; CONGRUENT;
D O I
10.1117/12.3000100
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Entangled photon pairs generated by a low-power continuous-wave laser could replicate pulsed laser-based table-top spectroscopy by taking advantage of the inherent quantum correlations between the photons. Much of the current work in the thin-film lithium niobate platform has focused on infrared wavelengths, leaving shorter wavelengths still a largely unexplored space, particularly for spectroscopy. In this work, we have fabricated periodically poled lithium niobate nanophotonic waveguides for entangled photon generation through spontaneous parametric downconversion with a visible pump (406 nm). Characterization of the waveguided pair source confirms the spectral and temporal correlations of energy-time entangled photons with an on-chip pair generation efficiency of (2.3 +/- 0.5) x 10(11) pairs/s/mW, brightness of (1.6 +/- 0.3) x 10(9) pairs/s/mW/nm, and two-photon interference visibility greater than 99%. With the same material platform, we have also demonstrated second harmonic generation with on-chip powers up to 30 mu W and wavelengths as low as 355 nm, demonstrating lithium niobate's potential for ultraviolet nonlinear photonics and frequency doubling in the UV-A spectral region. Through design of larger cross-section waveguides, we have also explored how variations in the lithium niobate thin film thickness can affect quasi-phase matching. To date, this is the first reported demonstration of periodically poled lithium niobate nanophotonic waveguides for spontaneous parametric downconversion at a fully visible pump wavelength (406 nm) as well as second harmonic generation in the UV (355 nm). Future work towards fully on-chip spectroscopy will explore integrating an on-chip Mach-Zehnder interferometer with the entangled photon source.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] On-Chip Generation and Manipulation of Entangled Photons Based on Reconfigurable Lithium-Niobate Waveguide Circuits
    Jin, H.
    Liu, F. M.
    Xu, P.
    Xia, J. L.
    Zhong, M. L.
    Yuan, Y.
    Zhou, J. W.
    Gong, Y. X.
    Wang, W.
    Zhu, S. N.
    PHYSICAL REVIEW LETTERS, 2014, 113 (10)
  • [32] Slow-Light Enhanced Second Harmonic Generation in Lithium Niobate Photonic Crystal Waveguides
    Gharsallah, Zaineb
    Sana, Makni
    Najjar, Monia
    Janyani, Vijay
    OPTICAL AND WIRELESS TECHNOLOGIES, OWT 2017, 2018, 472 : 295 - 300
  • [33] Second harmonic generation in nano-structured thin-film lithium niobate waveguides
    Wang, Cheng
    Xiong, Xiao
    Andrade, Nicolas
    Venkataraman, Vivek
    Ren, Xi-Feng
    Guo, Guang-Can
    Loncar, Marko
    OPTICS EXPRESS, 2017, 25 (06): : 6963 - 6973
  • [34] Second harmonic generation in helium-implanted periodically poled lithium niobate planar waveguides
    Vincent, B
    Boudrioua, A
    Kremer, R
    Moretti, P
    OPTICS COMMUNICATIONS, 2005, 247 (4-6) : 461 - 469
  • [35] Ultrabright Multiplexed Energy-Time-Entangled Photon Generation from Lithium Niobate on Insulator Chip
    Xue, Guang-Tai
    Niu, Yun-Fei
    Liu, Xiaoyue
    Duan, Jia-Chen
    Chen, Wenjun
    Pan, Ying
    Jia, Kunpeng
    Wang, Xiaohan
    Liu, Hua-Ying
    Zhang, Yong
    Xu, Ping
    Zhao, Gang
    Cai, Xinlun
    Gong, Yan-Xiao
    Hu, Xiaopeng
    Xie, Zhenda
    Zhu, Shining
    PHYSICAL REVIEW APPLIED, 2021, 15 (06)
  • [36] Second-harmonic and cascaded third-harmonic generation in generalized quasiperiodic poled lithium niobate waveguides
    Zhang, Li
    Wu, Xiao
    Hao, Zhenzhong
    Ma, Rui
    Gao, Feng
    Bo, Fang
    Zhang, Guoquan
    Xu, Jingjun
    OPTICS LETTERS, 2023, 48 (07) : 1906 - 1909
  • [37] High Quality Entangled Photon Pair Generation in Periodically Poled Thin-Film Lithium Niobate Waveguides
    Zhao, Jie
    Ma, Chaoxuan
    Ruesing, Michael
    Mookherjea, Shayan
    PHYSICAL REVIEW LETTERS, 2020, 124 (16)
  • [38] The generation of polarization-entangled photon pairs using periodically poled lithium niobate waveguides in a fibre loop
    Jiang, Yun-Kun
    Tomita, Akihisa
    JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 2007, 40 (02) : 437 - 443
  • [39] Growth of vanillin crystals for second harmonic generation (SHG) applications in the near-IR wavelength region
    Singh, OP
    Singh, YP
    Singh, N
    Singh, NB
    JOURNAL OF CRYSTAL GROWTH, 2001, 225 (2-4) : 470 - 473
  • [40] Broadband second-harmonic generation in step-chirped periodically poled lithium niobate waveguides
    Wu, Xiao
    Zhang, Li
    Hao, Zhenzhong
    Zhang, Ru
    Ma, Rui
    Bo, Fang
    Zhang, Guoquan
    Xu, Jingjun
    OPTICS LETTERS, 2022, 47 (07) : 1574 - 1577