• Chinese Optics Letters
  • Vol. 20, Issue 5, 050502 (2022)
Chentianfei Shen, Tong Shen, Qi Chen, Qinghan Zhang, and Jihong Zheng*
Author Affiliations
  • School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200433, China
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    DOI: 10.3788/COL202220.050502 Cite this Article Set citation alerts
    Chentianfei Shen, Tong Shen, Qi Chen, Qinghan Zhang, Jihong Zheng. Machine-learning-based high-speed lensless large-field holographic projection using double-sampling Fresnel diffraction method[J]. Chinese Optics Letters, 2022, 20(5): 050502 Copy Citation Text show less

    Abstract

    Machine learning can effectively accelerate the runtime of a computer-generated hologram. However, the angular spectrum method and single fast Fresnel transform-based machine learning acceleration algorithms are still limited in the field-of-view angle of projection. In this paper, we propose an efficient method for the fast generation of large field-of-view holograms combining stochastic gradient descent (SGD), neural networks, and double-sampling Fresnel diffraction (DSFD). Compared with the traditional Gerchberg–Saxton (GS) algorithm, the DSFD-SGD algorithm has better reconstruction quality. Our neural network can be automatically trained in an unsupervised manner with a training set of target images without labels, and its combination with the DSFD can improve the optimization speed significantly. The proposed DSFD-Net method can generate 2000-resolution holograms in 0.05 s. The feasibility of the proposed method is demonstrated with simulations and experiments.
    ϕ^=argmin{L[s·f(ϕ),Y]},

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    Ui(xi)=exp(ikxi22z)F[USLM(xSLM)exp(ikxSLM22z)],

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    Li=λz/ΔxSLM.

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    Us(xs)=exp(ikxs22r)F1[USLM(xSLM)],

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    Ui(xi)=exp[ikxi22(z+r)]F{Us(xs)exp[ikxs22(z+r)]}.

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    Δxs=λrLSLM,Δxi=λ(r+z)NΔxs.

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    Li=z+rrLSLM,

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    Chentianfei Shen, Tong Shen, Qi Chen, Qinghan Zhang, Jihong Zheng. Machine-learning-based high-speed lensless large-field holographic projection using double-sampling Fresnel diffraction method[J]. Chinese Optics Letters, 2022, 20(5): 050502
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