activity
20162021
most citedExperimentally Detecting Quantized Zak Phases without Chiral Symmetry in Photonic Lattices

108 citations · 130 across the 9 of their papers we have counts for

collaborators

17 papers

physics.optics2021108 cited

Experimentally Detecting Quantized Zak Phases without Chiral Symmetry in Photonic Lattices

Zhi-Qiang Jiao, Stefano Longhi, Xiao-Wei Wang +8

Symmetries play a major role in identifying topological phases of matter and in establishing a direct connection between protected edge states and topological bulk invariants via t…

quant-ph2020

Quantum Advantage with Timestamp Membosonsampling

Jun Gao, Xiao-Wei Wang, Wen-Hao Zhou +10

Quantum computer, harnessing quantum superposition to boost a parallel computational power, promises to outperform its classical counterparts and offer an exponentially increased s…

q-fin.RM2020

Quantum Computation for Pricing the Collateralized Debt Obligations

Hao Tang, Anurag Pal, Lu-Feng Qiao +3

Collateralized debt obligation (CDO) has been one of the most commonly used structured financial products and is intensively studied in quantitative finance. By setting the asset p…

quant-ph20201 cited

Quantum Go Machine

Lu-Feng Qiao, Jun Gao, Zhi-Qiang Jiao +9

Go has long been considered as a testbed for artificial intelligence. By introducing certain quantum features, such as superposition and collapse of wavefunction, we experimentally…

quant-ph20201 cited

Two-Dimensional Quantum Walk of Correlated Photons

Zhi-Qiang Jiao, Jun Gao, Wen-Hao Zhou +5

Quantum walks in an elaborately designed graph, is a powerful tool simulating physical and topological phenomena, constructing analog quantum algorithms and realizing universal qua…

quant-ph20201 cited

128 Identical Quantum Sources Integrated on a Single Silica Chip

Ruo-Jing Ren, Jun Gao, Wen-Hao Zhou +4

Quantum technology is playing an increasingly important role due to the intrinsic parallel processing capabilities endorsed by quantum superposition, exceeding upper limits of clas…