Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier
Manuel Castellanos-Beltran
1
,
L. Howe
2
,
A. Giachero
2
,
Michael R. Vissers
2
,
M. R. Vissers
2
,
Danilo Labranca
1
,
Joel N. Ullom
2
,
J. N. Ullom
2
,
Peter F Hopkins
1
Publication type: Journal Article
Publication date: 2025-08-01
scimago Q2
wos Q3
SJR: 0.508
CiteScore: 3.4
Impact factor: 1.8
ISSN: 10518223, 15582515, 23787074
Abstract
Increasing the size and complexity of quantum information systems requires highly-multiplexed readout architectures, as well as amplifier chains operating near the quantum limit (QL) of added noise. While documented prior efforts in KI-TWPA integration in quantum systems are scarce, in this work we demonstrate integration of a KI-TWPA with a multiplexed-qubit device. To quantify the system noise improvement we perform an ac Stark shift calibration to precisely determine noise power levels on-chip (at each cavity's reference plane) and the total system gain. We then characterize the qubit state measurement fidelity and the corresponding signal-to-noise ratio (SNR). To conduct the most faithful measurement of the benefits offered by the KI-TWPA we perform these measurements for readout chains where the high electron mobility transistor (HEMT) amplifier is the first-stage amplifier (FSA) – with none of the external hardware required to operate the KI-TWPA – and with the KI-TWPA as the FSA. While some readout cavities fall outside the KI-TWPA bandwidth, for those inside the bandwidth we demonstrate a maximum improvement in the state measurement SNR by a factor of 1.45, and increase the fidelity from 96.2% to 97.8%. These measurements demonstrate a system noise below 5 quanta referenced on-chip and we bound the KI-TWPA excess noise to be below 4 quanta for the six cavities inside its bandwidth. These results show a promising path forward for realizing quantum-limited readout chains in large qubit systems using a single parametric amplifier.
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Castellanos-Beltran M. et al. Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier // IEEE Transactions on Applied Superconductivity. 2025. Vol. 35. No. 5. pp. 1-5.
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Castellanos-Beltran M., Howe L., Giachero A., Vissers M. R., Vissers M., Labranca D., Ullom J. N., Ullom J. N., Hopkins P. F. Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier // IEEE Transactions on Applied Superconductivity. 2025. Vol. 35. No. 5. pp. 1-5.
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TY - JOUR
DO - 10.1109/tasc.2024.3525451
UR - https://ieeexplore.ieee.org/document/10820366/
TI - Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier
T2 - IEEE Transactions on Applied Superconductivity
AU - Castellanos-Beltran, Manuel
AU - Howe, L.
AU - Giachero, A.
AU - Vissers, Michael R.
AU - Vissers, M. R.
AU - Labranca, Danilo
AU - Ullom, Joel N.
AU - Ullom, J. N.
AU - Hopkins, Peter F
PY - 2025
DA - 2025/08/01
PB - Institute of Electrical and Electronics Engineers (IEEE)
SP - 1-5
IS - 5
VL - 35
SN - 1051-8223
SN - 1558-2515
SN - 2378-7074
ER -
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@article{2025_Castellanos-Beltran,
author = {Manuel Castellanos-Beltran and L. Howe and A. Giachero and Michael R. Vissers and M. R. Vissers and Danilo Labranca and Joel N. Ullom and J. N. Ullom and Peter F Hopkins},
title = {Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier},
journal = {IEEE Transactions on Applied Superconductivity},
year = {2025},
volume = {35},
publisher = {Institute of Electrical and Electronics Engineers (IEEE)},
month = {aug},
url = {https://ieeexplore.ieee.org/document/10820366/},
number = {5},
pages = {1--5},
doi = {10.1109/tasc.2024.3525451}
}
Cite this
MLA
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Castellanos-Beltran, Manuel, et al. “Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier.” IEEE Transactions on Applied Superconductivity, vol. 35, no. 5, Aug. 2025, pp. 1-5. https://ieeexplore.ieee.org/document/10820366/.