Cite this article:
Yu Sun, Chang-Wei Sun, Wei Zhou, Ran Yang, Jia-Chen Duan, Yan-Xiao Gong, Ping Xu, Shi-Ning Zhu. Degenerate polarization entangled photon source based on a single Ti-diffusion lithium niobate waveguide in a polarization Sagnac interferometerJ. Chin. Phys. B, 2023, 32(8): 080308.
| Yu Sun, Chang-Wei Sun, Wei Zhou, Ran Yang, Jia-Chen Duan, Yan-Xiao Gong, Ping Xu, Shi-Ning Zhu. Degenerate polarization entangled photon source based on a single Ti-diffusion lithium niobate waveguide in a polarization Sagnac interferometerJ. Chin. Phys. B, 2023, 32(8): 080308. |
Degenerate polarization entangled photon source based on a single Ti-diffusion lithium niobate waveguide in a polarization Sagnac interferometer
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Abstract
Combining a Ti-diffusion periodically poled lithium niobate (PPLN) waveguide with a Sagnac interferometer, two opposite directions type-II spontaneous parametric down conversions (SPDC) occur coherently and yield a high brightness, high stability polarization entanglement source. The source produces degenerate photon pairs at 1540.4 nm with a brightness of B = (1.36 ± 0.03) × 106 pairs/(s⋅nm⋅mW). We perform quantum state tomography to reconstruct the density matrix of the output state and obtain a fidelity of F = 0.983 ± 0.001. The high brightness and phase stability of our waveguide source enable a wide range of quantum information experiments operating at a low pump power as well as hold the advantage in mass production which can promote the practical applications of quantum technologies. -
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