High-axial-resolution speckle-free holographic reconstruction via cylindrical quadratic phase method and temporal focusing

Author:

Wang Yifan1,Zheng YaoORCID,Li Hongru2,Gong Wei12,Si Ke2ORCID

Affiliation:

1. Nanhu Brain-Computer Interface Institute

2. Zhejiang University School of Medicine

Abstract

Holographic techniques enable precise laser manipulation, but suffer from two considerable limitations: speckle and deterioration of axial distribution. Here, we propose a cylindrical quadratic phase (CQP) method with temporal focusing (TF) to generate speckle-free holographic illumination with high axial resolution. TF-CQP utilizes a superposed cylindrical phase as the initial guess to iteratively optimize phase hologram, realizing speckle-free holographic reconstruction on the target focal plane and eliminating secondary focus on the defocused planes. TF-CQP further disperses defocused beams symmetrically by a blazed grating, placed conjugate to the focal plane, which enhances axial confinement. Simulation and experimental results show that TF-CQP reconstructs speckle-free illumination with arbitrary shapes and <10 µm axial resolution. Compared to TF-GS (Gerchberg-Saxton algorithm), widely used in holographic optogenetics, TF-CQP shows increased uniformity of 200% and improved modulation efficiency of 32.33% for parallel holographic illumination, as well as a 10% increment in axial resolution.

Funder

STI 2030—Major Projects

National Natural Science Foundation of China

Key R&D Program of Zhejiang Province

Zhejiang Provincial Outstanding Youth Science Foundation

CAMS Innovation Fund for Medical Sciences

Fundamental Research Funds for the Central Universities

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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