collaborators

10 papers

physics.optics2026

Approaching physical limits of latent dimensionality in optical computing

Zhenyu Zhao, Zijun Qiu, Xuan Hu +8

The physical implementation of artificial intelligence requires mapping computational processes onto the dynamic physical processes of the underlying computing platform. The photon…

physics.optics2026

On-chip Multimode Opto-electronic Neural Network

Jinlong Xiang, Youlve Chen, Chaojun Xu +5

Opto-electronic computing combines the complementary strengths of photonics and electronics to deliver ultrahigh computational throughput with high energy efficiency. However, its…

physics.optics2026

Bio-Inspired Photonic Spectral Encoders

Yujia Zhang, Xiangfu Lei, Yinpeng Chen +7

Compact spectrometers promise to revolutionize sensing applications, offering a unique pathway to laboratory-grade analysis within a miniaturized footprint. Central to their perfor…

physics.optics2025

Deep Photonic Reservoir Computing with On-chip Nonlinearity

Jinlong Xiang, Youlve Chen, Yuchen Yin +6

Reservoir computing, renowned for its low training cost, has emerged as a promising lightweight paradigm for efficient spatiotemporal processing,it remains challenging to realize d…

physics.optics2025

Reconfigurable non-Abelian geometric phase in hybrid integrated photonics

Youlve Chen, Jiaxin Zhang, Jinlong Xiang +4

The non-Abelian geometric phase possesses the capability of enabling robust and fault-resilient unitary transformations, making it a cornerstone of holonomic quantum computation. T…

physics.optics2025

Observation of generic U(m) non-Abelian holonomy in photonics

Youlve Chen, Jinlong Xiang, An He +3

Non-Abelian geometric phases form the foundation of fault-tolerant holonomic quantum computation. An "all-geometric" approach leveraging these phases enables robust unitary operati…