activity
20242026
collaborators

16 papers

physics.optics2026

Integrated photonic computing: towards high-dimensional information processing

Ji Qin, Zhi-Kai Pong, Xuke Qiu +14

The rapid growth of artificial intelligence, coupled with the slowing of Moore's law, is straining computing infrastructure, as CMOS electronics face inherent limits in bandwidth,…

physics.optics2026

Skyrmions based on optical anisotropy for topological encoding

Yunqi Zhang, An Aloysius Wang, Runchen Zhang +6

The observation of skyrmions across diverse physical domains suggests that they are universal features of S-valued fields, reflecting the ubiquity of topology in the study of…

cs.CV2026

GloPath: An Entity-Centric Foundation Model for Glomerular Lesion Assessment and Clinicopathological Insights

Qiming He, Jing Li, Tian Guan +26

Glomerular pathology is central to the diagnosis and prognosis of renal diseases, yet the heterogeneity of glomerular morphology and fine-grained lesion patterns remain challenging…

physics.optics2026

Topologically robust programmable logic arrays using light and matter skyrmions

Ruofu Liu, An Aloysius Wang, Yunqi Zhang +9

Photonic computing offers a low-power, high-bandwidth paradigm for information processing; however, the analogue nature of conventional architectures means that intrinsic noise and…

physics.optics2026

Resolving topological obstructions to vectorial structured field control

An Aloysius Wang, Yuxi Cai, Yifei Ma +2

The use of structured matter, such as optical retarders, for vectorial control is a well-established and widely employed technique in modern optics, and has driven continued advanc…

physics.optics2026

General in situ feedback control of cascaded liquid crystal spatial light modulators for structured field generation

An Aloysius Wang, Yuxi Cai, Zhenglin Li +4

Cascaded liquid crystal spatial light modulators provide a versatile strategy for the generation of structured light and matter fields, with applications including optical communic…