collaborators

7 papers

quant-ph2025

High-performance multiplexed readout of superconducting qubits with a tunable broadband Purcell filter

Yuzhe Xiong, Zilin Wang, Jiawei Zhang +14

Fast, high-fidelity, and low back-action readout plays a crucial role in the advancement of quantum error correction (QEC). Here, we demonstrate high-performance multiplexed readou…

quant-ph2025

State Similarity in Modular Superconducting Quantum Processors with Classical Communications

Bujiao Wu, Changrong Xie, Peng Mi +20

As quantum devices continue to scale, distributed quantum computing emerges as a promising strategy for executing large-scale tasks across modular quantum processors. A central cha…

quant-ph2025

Improving Quantum Optimization to Achieve Quadratic Time Complexity

Ji Jiang, Peisheng Huang, Zhiyi Wu +15

Quantum Approximate Optimization Algorithm (QAOA) is a promising candidate for achieving quantum advantage in combinatorial optimization. However, its variational framework present…

quant-ph2025

Synthetic -flux system in 2D superconducting qubit array with tunable coupling

Yiting Liu, Jiawei Zhang, Zechen Guo +21

Flat-band systems provide an ideal platform for exploring exotic quantum phenomena, where the strongly suppressed kinetic energy in these flat energy bands suggests the potential f…

quant-ph2024

A C-Band Cryogenic GaAs MMIC Low-Noise Amplifier for Quantum Applications

Zechen Guo, Daxiong Sun, Peisheng Huang +16

Large-scale superconducting quantum computers require massive numbers of high-performance cryogenic low-noise amplifiers (cryo-LNA) for qubit readout. Here we present a C-Band mono…

quant-ph2024

Synthetic multi-dimensional Aharonov-Bohm cages in Fock state lattices

Jiajian Zhang, Wenhui Huang, Ji Chu +13

Fock-state lattices (FSLs), composed of photon number states with infinite Hilbert space, have emerged as a promising platform for simulating high-dimensional physics due to their…