activity
20172021
most citedExperimental Blind Quantum Computing for a Classical Client

99 citations · 135 across the 4 of their papers we have counts for

collaborators

6 papers

quant-ph20216 cited

A deterministic source of indistinguishable photons in a cluster state

Dan Cogan, Zu-En Su, Oded Kenneth +1

Measurement-based quantum communication relies on the availability of highly entangled multi-photon cluster states. The inbuilt redundancy in the cluster allows communication betwe…

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…

cond-mat.mes-hall2020

Optical Phase Measurement Using a Deterministic Source of Entangled Multi-photon States

Giora Peniakov, Zu-En Su, Ayal Beck +3

Precision measurements of optical phases have many applications in science and technology. Entangled multi-photon states have been suggested for performing such measurements with p…

quant-ph201912 cited

Complete state tomography of a quantum dot confined spin qubit

Dan Cogan, Giora Peniakov, Zu-En Su +1

Semiconductor quantum dots are probably the preferred choice for interfacing anchored, matter spin qubits and flying photonic qubits. While full tomography of a flying qubit or lig…

quant-ph2018

12-photon entanglement and scalable scattershot boson sampling with optimal entangled-photon pairs from parametric down-conversion

Han-Sen Zhong, Yuan Li, Wei Li +17

Entangled photon sources with simultaneously near-unity heralding efficiency and indistinguishability are the fundamental elements for scalable photonic quantum technologies. We de…

quant-ph201799 cited

Experimental Blind Quantum Computing for a Classical Client

He-Liang Huang, Qi Zhao, Xiongfeng Ma +8

To date, blind quantum computing demonstrations require clients to have weak quantum devices. Here we implement a proof-of-principle experiment for completely classical clients. Vi…