papers

Publications (7)

physics.optics2021

Recognizing three-dimensional phase images with deep learning

Weiru Fan, Tianrun Chen, Xingqi Xu +6

Optical phase contains key information for biomedical and astronomical imaging. However, it is often obscured by layers of heterogeneous and scattering media, which render optical…

cond-mat.dis-nn2023

Programmable Photonic Simulator for Spin Glass Models

Weiru Fan, Yuxuan Sun, Xingqi Xu +3

Spin glasses featured by frustrated interactions and metastable states have important applications in chemistry, material sciences and artificial neural networks. However, the solu…

physics.optics2020

Second Harmonic Imaging Enhanced by Deep Learning Decipher

Weiru Fan, Tianrun Chen, Eddie Gil +4

Wavefront sensing and reconstruction are widely used for adaptive optics, aberration correction, and high-resolution optical phase imaging. Traditionally, interference and/or micro…

eess.IV2024

General Intelligent Imaging and Uncertainty Quantification by Deterministic Diffusion Model

Weiru Fan, Xiaobin Tang, Yiyi Liao +1

Computational imaging is crucial in many disciplines from autonomous driving to life sciences. However, traditional model-driven and iterative methods consume large computational p…

physics.optics2025

Topological Phase Transition and Geometrical Frustration in Fourier Photonic Simulator

Yuxuan Sun, Weiru Fan, Xingqi Xu +2

XY models with continuous spin orientation play a pivotal role in understanding topological phase transitions and emergent frustration phenomena, such as superconducting and superf…

physics.optics2024

Deep Learning Enhanced Quantum Holography with Undetected Photons

Weiru Fan, Gewei Qian, Yutong Wang +9

Holography is an essential technique of generating three-dimensional images. Recently, quantum holography with undetected photons (QHUP) has emerged as a groundbreaking method capa…