activity
20182023
most citedQuantum computational advantage using photons

2.3k citations · 4.6k across the 11 of their papers we have counts for

collaborators
Showing quant-phShow all

19 papers · 1 filter

quant-ph202320 cited

High-efficiency single-photon source above the loss-tolerant threshold for efficient linear optical quantum computing

Xing Ding, Yong-Peng Guo, Mo-Chi Xu +13

Photon loss is the biggest enemy for scalable photonic quantum information processing. This problem can be tackled by using quantum error correction, provided that the overall phot…

quant-ph202114 cited

Quantum Computational Advantage via 60-Qubit 24-Cycle Random Circuit Sampling

Qingling Zhu, Sirui Cao, Fusheng Chen +50

To ensure a long-term quantum computational advantage, the quantum hardware should be upgraded to withstand the competition of continuously improved classical algorithms and hardwa…

quant-ph202118 cited

Directly Measuring a Multiparticle Quantum Wave Function via Quantum Teleportation

Ming-Cheng Chen, Yuan Li, Run-Ze Liu +7

We propose a new method to directly measure a general multi-particle quantum wave function, a single matrix element in a multi-particle density matrix, by quantum teleportation. Th…

quant-ph2021441 cited

Phase-Programmable Gaussian Boson Sampling Using Stimulated Squeezed Light

Han-Sen Zhong, Yu-Hao Deng, Jian Qin +23

The tantalizing promise of quantum computational speedup in solving certain problems has been strongly supported by recent experimental evidence from a high-fidelity 53-qubit super…

quant-ph20214 cited

Quantum interference between independent solid-state single-photon sources separated by 300 km fiber

Xiang You, Ming-Yang Zheng, Si Chen +23

In the quest to realize a scalable quantum network, semiconductor quantum dots (QDs) offer distinct advantages including high single-photon efficiency and indistinguishability, hig…

quant-ph20211.1k cited

Strong quantum computational advantage using a superconducting quantum processor

Yulin Wu, Wan-Su Bao, Sirui Cao +51

Scaling up to a large number of qubits with high-precision control is essential in the demonstrations of quantum computational advantage to exponentially outpace the classical hard…