collaborators
Showing quant-phShow all

8 papers · 1 filter

quant-ph2025

Theory of Scalable Spin Squeezing with Disordered Quantum Dipoles

Avi Kaplan-Lipkin, Philip J. D. Crowley, Jonathan N. Hallén +6

Spin squeezed entanglement enables metrological precision beyond the classical limit. Understood through the lens of continuous symmetry breaking, dipolar spin systems exhibit the…

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

Logical multi-qubit entanglement with dual-rail superconducting qubits

Wenhui Huang, Xuandong Sun, Jiawei Zhang +21

Recent advances in quantum error correction (QEC) across hardware platforms have demonstrated operation near and beyond the fault-tolerance threshold, yet achieving exponential sup…

quant-ph2025

Spin squeezing in an ensemble of nitrogen-vacancy centers in diamond

Weijie Wu, Emily J. Davis, Lillian B. Hughes +10

Spin squeezed states provide a seminal example of how the structure of quantum mechanical correlations can be controlled to produce metrologically useful entanglement. Such squeeze…

quant-ph2025

A thermal-noise-resilient microwave quantum network traversing 4 K

Jiawei Qiu, Zihao Zhang, Zilin Wang +9

Quantum communication at microwave frequencies has been fundamentally constrained by the susceptibility of microwave photons to thermal noise, hindering their application in scalab…

quant-ph2025

Logical operations with a dynamical qubit in Floquet-Bacon-Shor code

Xuandong Sun, Longcheng Li, Zhiyi Wu +29

Quantum error correction (QEC) protects quantum systems against inevitable noises and control inaccuracies, providing a pathway towards fault-tolerant (FT) quantum computation. Sta…