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Updated: Sep 27, 2026

Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform
Published on: August 2, 2019
What Is the Maximum Density of Microwave Control Lines in a Superconducting Quantum Computer?
Nikolas Klemola Tango1, Mar Francis De Guzman1, Slawomir Simbierowicz1
1Bluefors Oy, Arinatie 10, 00370 Helsinki, Finland.
Abstract:
Scaling up superconducting quantum computers requires denser control wiring, introducing microwave crosstalk along the entire cryogenic signal path rather than only near the chip. Here, we introduce a framework that combines microwave transmission-line theory with a quantum Hamiltonian description to quantify the wiring-induced microwave crosstalk and the resulting gate infidelity for an all-microwave universal gate set. Using this approach, we determine the equal-level far-end crosstalk (ELFEXT) required to operate fixed-frequency transmons at arbitrary target fidelities and find that achieving 99.99% fidelity requires ELFEXT levels of approximately -43 dB for the R_{X} gate and -73 dB for the cross-resonance gate. Finally, we use these results to bound the number of physical qubits on a chip.
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