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quant-ph2026

Parametrically induced strong coupling between a superconducting quantum circuit and a solid-state spin ensemble

Alejandro E. Baptista, Jinwoong Kim, Sonia Rani +2

Efficient quantum state transfer between superconducting circuits and solid-state spins would unlock high-coherence quantum memories for superconducting quantum processors. We demo…

quant-ph2026

Autonomous stabilization of remote entanglement in a cascaded quantum network

Abdullah Irfan, Kaushik Singirikonda, Mingxing Yao +5

Remote entanglement between widely separated qubits is a fundamental quantum phenomenon and a critical resource for quantum information applications. Generating entanglement betwee…

quant-ph2024

High dynamic-range quantum sensing of magnons and their dynamics using a superconducting qubit

Sonia Rani, Xi Cao, Alejandro E. Baptista +2

Magnons can endow quantum devices with new functionalities. Assessing their potential requires precise characterization of magnon properties. Here, we use a superconducting qubit t…

quant-ph2024

Parametrically controlled chiral interface for superconducting quantum devices

Xi Cao, Abdullah Irfan, Michael Mollenhauer +2

Nonreciprocal microwave routing plays a crucial role for measuring quantum circuits, and allows for realizing cascaded quantum systems for generating and stabilizing entanglement b…

quant-ph2024

A high-efficiency plug-and-play superconducting qubit network

Michael Mollenhauer, Abdullah Irfan, Xi Cao +2

Modular architectures are a promising approach to scale quantum devices to the point of fault tolerance and utility. Modularity is particularly appealing for superconducting qubits…