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20242026
most citedPhotonic torons, topological phase transition and tunable spin monopoles

26 citations · 59 across the 14 of their papers we have counts for

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6 papers · 1 filter

physics.optics2026

Recovering topological information of light by topological learning

Benquan Wang, Trishita Das, Yuhan Peng +8

The evolution of modern-day communication networks towards optical solutions with enhanced capacity and robustness is driving interest in topological light waves, exploiting their…

physics.optics2026

High-speed electrically driven liquid-crystal compact optical skyrmion encoder

Yu-Ping Tang, Zhenyu Guo, Ze-Yu Wang +8

Optical skyrmions possess topological polarization textures that can maintain topological robustness under external perturbations, making them promising carriers for disturbance-re…

physics.optics2026

Non-diffracting meronic spin defects of light

Nilo Mata-Cervera, Miguel A. Porras, Yijie Shen

Optical vortices are singularity lines where the light field intensity vanishes and its phase is undefined. These threads of darkness are adorned by Gauss's law as lines of pure lo…

physics.optics2026★ 1 cited

Unfolding unstable skyrmionic polarization textures

Nilo Mata-Cervera, Zhenyu Guo, Yijie Shen

Polarization of light can form skyrmionic textures, akin to nonlinear solitons in condensed matter, yet their disparate physical context has motivated extensive debate regarding th…

physics.optics2026

High-performance Sources of Multidimensionally Engineered Quantum Light Based on Monolithic Microcavity-metalens Interfaces

Jiantao Ma, Dong Liu, Shunfa Liu +15

The ultimate non-classic light sources for modern photonic quantum technology require on-demand generation of indistinguishable quantum light with high brightness and flexible engi…

physics.optics2026

Gouy phase-assisted Zeno effect for protecting light structure in random media

Nilo Mata-Cervera, Anton N. Vetlugin, Cesare Soci +2

Identifying physical mechanisms that protect the information carried by various forms of structured light is one of the cornerstones of today's classical and quantum communications…