activity
20152025
most citedGiant quantized Goos-Hänchen effect on the surface of graphene in quantum Hall regime

58 citations · 60 across the 4 of their papers we have counts for

collaborators
Showing physics.opticsShow all

5 papers · 1 filter

physics.optics2025

Noncommutative metasurfaces enabled diverse quantum path entanglement of structured photons

Yan Wang, Yichang Shou, Jiawei Liu +5

Quantum entanglement, a fundamental concept in quantum mechanics, lies at the heart of many current and future quantum technologies. A pivotal task is generation and control of div…

physics.optics20191 cited

Broadband Optical Fully Differential Operation Based on the Spin-orbit Interaction of Light

Shanshan He, Junxiao Zhou, Shizhen Chen +3

Optical technology may provide important architectures for future computing, such as analog optical computing and image processing. Compared with traditional electric operation, op…

physics.optics2019

Precision Measurement of the Optical Conductivity of Atomically Thin Crystals via Photonic Spin Hall Effect

Shizhen Chen, Xiaohui Ling, Weixing Shu +2

How to measure the optical conductivity of atomically thin crystals is an important but challenging issue due to the weak light-matter interaction at the atomic scale. Photonic spi…

physics.optics201758 cited

Giant quantized Goos-Hänchen effect on the surface of graphene in quantum Hall regime

Weijie Wu, Shizhen Chen, Chengquan Mi +3

We theoretically predict a giant quantized Goos-Hänchen (GH) effect on the surface of graphene in quantum Hall regime. The giant quantized GH effect manifests itself as an angular…

physics.optics20151 cited

Modified weak measurements for detecting photonic spin Hall effect

Shizhen Chen, Xinxing Zhou, Chengquan Mi +2

Weak measurement is an important technique for detecting the tiny spin-dependent splitting in photonic spin Hall effect. The weak measurement is only valid when the probe wavefunct…