Low Crosstalk in a Scalable Superconducting Quantum Lattice

Fuente: arXiv
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Bibliographic Details
Main Authors: Alghadeer, Mohammed, Cao, Shuxiang, Fasciati, Simone D, Piscitelli, Michele, Gow, Paul C., Gates, James C., Bakr, Mustafa, Leek, Peter J.
Format: Preprint
Published: 2025
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author Alghadeer, Mohammed
Cao, Shuxiang
Fasciati, Simone D
Piscitelli, Michele
Gow, Paul C.
Gates, James C.
Bakr, Mustafa
Leek, Peter J.
author_facet Alghadeer, Mohammed
Cao, Shuxiang
Fasciati, Simone D
Piscitelli, Michele
Gow, Paul C.
Gates, James C.
Bakr, Mustafa
Leek, Peter J.
contents Superconducting quantum circuits are a key platform for advancing quantum information processing and simulation. Scaling efforts currently encounter challenges such as Josephson-junction fabrication yield, design frequency targeting, and crosstalk arising both from spurious microwave modes and intrinsic interactions between qubits. We demonstrate a scalable 4x4 square lattice with low crosstalk, comprising 16 fixed-frequency transmon qubits with nearest-neighbor capacitive coupling that is implemented in a tileable, 3D-integrated circuit architecture with off-chip inductive shunting to mitigate spurious enclosure modes. We report on the design and comprehensive characterization, and show that our implementation achieves targeted device parameters with very low frequency spreads and simultaneous single-qubit gate errors across the device. Our results provide a promising pathway toward a scalable, low-crosstalk superconducting lattice topology with high qubit connectivity for quantum error correction and simulation.
format Preprint
id arxiv_https___arxiv_org_abs_2505_22276
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Low Crosstalk in a Scalable Superconducting Quantum Lattice
Alghadeer, Mohammed
Cao, Shuxiang
Fasciati, Simone D
Piscitelli, Michele
Gow, Paul C.
Gates, James C.
Bakr, Mustafa
Leek, Peter J.
Quantum Physics
Superconducting quantum circuits are a key platform for advancing quantum information processing and simulation. Scaling efforts currently encounter challenges such as Josephson-junction fabrication yield, design frequency targeting, and crosstalk arising both from spurious microwave modes and intrinsic interactions between qubits. We demonstrate a scalable 4x4 square lattice with low crosstalk, comprising 16 fixed-frequency transmon qubits with nearest-neighbor capacitive coupling that is implemented in a tileable, 3D-integrated circuit architecture with off-chip inductive shunting to mitigate spurious enclosure modes. We report on the design and comprehensive characterization, and show that our implementation achieves targeted device parameters with very low frequency spreads and simultaneous single-qubit gate errors across the device. Our results provide a promising pathway toward a scalable, low-crosstalk superconducting lattice topology with high qubit connectivity for quantum error correction and simulation.
title Low Crosstalk in a Scalable Superconducting Quantum Lattice
topic Quantum Physics
url https://arxiv.org/abs/2505.22276