DOAJ Open Access 2025

Fast Multiplexed Superconducting-Qubit Readout with Intrinsic Purcell Filtering Using a Multiconductor Transmission Line

Peter A. Spring Luka Milanovic Yoshiki Sunada Shiyu Wang Arjan F. van Loo +2 lainnya

Abstrak

Fast and accurate qubit measurement remains a critical challenge on the path to fault-tolerant quantum computing. In superconducting quantum circuits, fast qubit measurement has been achieved using a dispersively coupled resonator with a large externally limited linewidth. This necessitates the use of a Purcell filter that protects the qubit from relaxation through the readout channel. Here, we show that a readout resonator and filter resonator, coupled to each other both capacitively and inductively via a multiconductor transmission line, can produce a compact notch-filter circuit that effectively eliminates the Purcell decay channel through destructive interference. By utilizing linewidths as large as 42 MHz, we perform simultaneous readout of four qubits using a 56-ns integration window and benchmark an average assignment fidelity of 99.77%, with the highest qubit assignment fidelity exceeding 99.9%. Including the simulated readout ring-down time, the total readout duration was between 115 and 215 ns for the four qubits, which we anticipate can be reduced to around 100 ns with active ring-down pulse shaping. These results demonstrate a significant advancement in speed and fidelity for multiplexed superconducting-qubit readout.

Penulis (7)

P

Peter A. Spring

L

Luka Milanovic

Y

Yoshiki Sunada

S

Shiyu Wang

A

Arjan F. van Loo

S

Shuhei Tamate

Y

Yasunobu Nakamura

Format Sitasi

Spring, P.A., Milanovic, L., Sunada, Y., Wang, S., Loo, A.F.v., Tamate, S. et al. (2025). Fast Multiplexed Superconducting-Qubit Readout with Intrinsic Purcell Filtering Using a Multiconductor Transmission Line. https://doi.org/10.1103/PRXQuantum.6.020345

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.1103/PRXQuantum.6.020345
Akses
Open Access ✓