activity
20162020
most citedContinuous-variable geometric phase and its manipulation for quantum computation in a superconducting circuit

91 citations · 93 across the 2 of their papers we have counts for

collaborators

12 papers

quant-ph2020

Emulating quantum teleportation of a Majorana zero mode qubit

He-Liang Huang, Marek Narozniak, Futian Liang +14

Topological quantum computation based on anyons is a promising approach to achieve fault-tolerant quantum computing. The Majorana zero modes in the Kitaev chain are an example of n…

quant-ph2020

Ergodic-localized junctions in a periodically-driven spin chain

Chen Zha, V. M. Bastidas, Ming Gong +18

We report the analogue simulation of an ergodiclocalized junction by using an array of 12 coupled superconducting qubits. To perform the simulation, we fabricated a superconducting…

quant-ph2019

Verification of a resetting protocol for an uncontrolled superconducting qubit

Ming Gong, Feihu Xu, Zheng-Da Li +20

Quantum resetting protocols allow a quantum system to be sent to a state in the past by making it interact with quantum probes when neither the free evolution of the system nor the…

quant-ph2019

Demonstration of Adiabatic Variational Quantum Computing with a Superconducting Quantum Coprocessor

Ming-Cheng Chen, Ming Gong, Xiao-Si Xu +15

Adiabatic quantum computing enables the preparation of many-body ground states. This is key for applications in chemistry, materials science, and beyond. Realisation poses major ex…

quant-ph2019

Deterministic entanglement swapping in a superconducting circuit

Wen Ning, Xin-Jie Huang, Pei-Rong Han +8

Entanglement swapping, the process to entangle two particles without coupling them in any way, is one of the most striking manifestations of the quantum-mechanical nonlocal charact…

quant-ph2018

Genuine 12-qubit entanglement on a superconducting quantum processor

Ming Gong, Ming-Cheng Chen, Yarui Zheng +20

We report the preparation and verification of a genuine 12-qubit entanglement in a superconducting processor. The processor that we designed and fabricated has qubits lying on a 1D…