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DOE OSTI · 3704542

Quantum State Transfer between Heterogeneous 3D QPUs

Abstract

We present detailed analyses and microwave simulations of a quantum interconnect architecture that couples two distinct three-dimensional quantum processing units (QPUs): (i) a two-cell superconducting radio-frequency (SRF) cavity coupled to multiple transmon qubits and (ii) a waveguide-based cavity hosting a planar circuit with transmons and resonators. The modules are linked via a low-loss superconducting coaxial cable, which serves as a quantum bus. Finite-element electromagnetic simulations are performed to optimize coupling strengths and mode frequencies for high-fidelity quantum state transfer between cavities. These simulation results provide a comprehensive blueprint for the experimental realization of a flexible quantum interconnect architecture, coupling heterogeneous QPUs.

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BibTeXRIS

Yaker, Joey [Fermilab], Reineri, Alessandro [Fermilab] (ORCID:0000000161759027), Romanenko, Alexander [Fermilab] (ORCID:0000000313780870), Grasselino, Anna [Fermilab] (ORCID:0000000239858296), Roy, Tanay [Fermilab] (ORCID:000000019442862X), Chao, Yu-Chiu [Fermilab], Koch, Jens [Northwestern U.] (ORCID:000000025047631X), Lu, Yao [Fermilab] (ORCID:000000020413698X), Zorzetti, Silvia [Fermilab] (ORCID:0000000232083387). 2025-08-30. Quantum State Transfer between Heterogeneous 3D QPUs. https://doi.org/10.1109/qce65121.2025.00123

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