• Chinese Journal of Quantum Electronics
  • Vol. 39, Issue 3, 418 (2022)
Xiaofan TANG*
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1007461.2022.03.013 Cite this Article
    TANG Xiaofan. Preparation of broadband entangled source based on microring resonator[J]. Chinese Journal of Quantum Electronics, 2022, 39(3): 418 Copy Citation Text show less
    References

    [1] Wengerowsky S, Joshi S K, Steinlechner F, et al. An entanglement-based wavelength-multiplexed quantum communication network[J]. Nature, 2018, 564(7735): 225-228.

    [2] Deng D L, Li X P, Das Sarma S. Quantum entanglement in neural network states[J]. Physical Review X, 2017, 7(2): 021021.

    [3] Reimer C, Kues M, Roztocki P, et al. Generation of multiphoton entangled quantum states by means of integrated frequency combs[J]. Science, 2016, 351(6278): 1176-1180.

    [4] Lo Franco R, Compagno G. Indistinguishability of elementary systems as a resource for quantum information processing[J]. Physical Review Letters, 2018, 120(24): 240403.

    [5] Liao S K, Cai W Q, Liu W Y, et al. Satellite-to-ground quantum key distribution[J]. Nature, 2017, 549(7670): 43-47.

    [6] Stefszky M, Ricken R, Eigner C, et al. Waveguide cavity resonator as a source of optical squeezing[J]. Physical Review Applied, 2017, 7(4): 044026.

    [7] Frankis H C, Kiani K M, Su D, et al. High-Q tellurium-oxide-coated silicon nitride microring resonators[J]. Optics Letters, 2019, 44(1): 118-121.

    [8] Wu H, Tan Y, Dai D X. Ultra-broadband high-performance polarizing beam splitter on silicon[J]. Optics Express, 2017, 25(6): 6069-6075.

    [9] He G, Sun Y, Hu L, et al. Five-partite entanglement generation between two optical frequency combs in a quasi-periodic χ(2) nonlinear optical crystal[J]. Scientific Reports, 2017, 7: 9054.

    [10] Feng C M, Liu Q S. Symmetries, reductions, exact solutions and conservation laws of Zabolotskaya-Khokhlov equation with dissipative term[J]. Chinese Journal of Quantum Electronics, 2015, 32(1): 462.

    [11] Koefoed J G, Friis S M M, Christensen J B, et al. Spectrally pure heralded single photons by spontaneous four-wave mixing in a fiber: Reducing impact of dispersion fluctuations[J]. Optics Express, 2017, 25(17): 20835-20849.

    [12] Kamandar Dezfouli M, Dignam M M. Photon-pair generation in lossy coupled-resonator optical waveguides via spontaneous four-wave mixing[J]. Physical Review A, 2017, 95(3): 033815.

    [13] González-Arciniegas C, Treps N, Nussenzveig P. Third-order nonlinearity OPO: Schmidt mode decomposition and tripartite entanglement[J]. Optics Letters, 2017, 42(23): 4865-4868.

    [14] Plick W N, Arzani F, Treps N, et al. Violating Bell inequalities with entangled optical frequency combs and multipixel homodyne detection[J]. Physical Review A, 2018, 98(6): 062101.

    [15] Villois A, Kondratiev N, Breunig I, et al. Frequency combs in a microring optical parametric oscillator[J]. Optics Letters, 2019, 44(18): 4443-4446.

    [16] Serikawa T, Yoshikawa J I, Makino K, et al. Creation and measurement of broadband squeezed vacuum from a ring optical parametric oscillator[J]. Optics Express, 2016, 24(25): 28383-28391.

    [17] Villois A, Kondratiev N, Breunig I, et al. Frequency combs in a microring optical parametric oscillator[J]. Optics Letters, 2019, 44(18): 4443-4446.

    [18] Duan L M, Giedke G, Cirac J I, et al. Inseparability criterion for continuous variable systems[J]. Physical Review Letters, 2000, 84(12): 2722-2725.

    TANG Xiaofan. Preparation of broadband entangled source based on microring resonator[J]. Chinese Journal of Quantum Electronics, 2022, 39(3): 418
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