activity
20182021
most citedTopologically Protected Quantum Entanglement

10 citations · 17 across the 4 of their papers we have counts for

collaborators

9 papers

quant-ph20211 cited

Topologically Protecting Squeezed Light on a Photonic Chip

Ruo-Jing Ren, Yong-Heng Lu, Ze-Kun Jiang +7

Squeezed light is a critical resource in quantum sensing and information processing. Due to the inherently weak optical nonlinearity and limited interaction volume, considerable pu…

quant-ph20204 cited

Protecting Quantum Superposition and Entanglement with Photonic Higher-Order Topological Crystalline Insulator

Yao Wang, Bi-Ye Xie, Yong-Heng Lu +10

Higher-order topological insulator, as a newly found non-trivial material and structure, possesses a topological phase beyond the bulk-boundary correspondence. Here, we present an…

cond-mat.mes-hall2020

Observing Movement of Dirac Cones from Single-Photon Dynamics

Yong-Heng Lu, Yao Wang, Yi-Jun Chang +6

Graphene with honeycomb structure, being critically important in understanding physics of matter, exhibits exceptionally unusual half-integer quantum Hall effect and unconventional…

quant-ph2020

Quantum Slide and NAND Tree on a Photonic Chip

Yao Wang, Zi-Wei Cui, Yong-Heng Lu +5

In the age of post-Moore era, the next-generation computing model would be a hybrid architecture consisting of different physical components such as photonic chips. In 2008, it has…

cond-mat.mes-hall20192 cited

Observation of Magic Angle and Wall State in Twisted Bilayer Photonic Graphene

Yao Wang, Yi-Jun Chang, Jun Gao +4

Graphene, a one-layer honeycomb lattice of carbon atoms, exhibits unconventional phenomena and attracts much interest since its discovery. Recently, an unexpected Mott-like insulat…

quant-ph201910 cited

Topologically Protected Quantum Entanglement

Yao Wang, Yong-Heng Lu, Jun Gao +5

Quantum entanglement, as the strictly non-classical phenomena, is the kernel of quantum computing and quantum simulation, and has been widely applied ranging from fundamental tests…