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References
50
[2]
PT420 product data (2017)
[6]
chen "Metrology of quantum control and measurement in superconducting qubits" (2018)
[7]
Triton XL Product Brochure (2019)
[8]
kittel Thermal Physics (1969)
[14]
Quantum machine learning

Jacob Biamonte, Peter Wittek, Nicola Pancotti et al.

Nature 10.1038/nature23474
[19]
sakurai Modern Quantum Mechanics (1994)
[20]
bardin "A 28 nm bulk-CMOS 4-to-8 GHz <2 mw cryogenic pulse modulator for scalable quantum computing" IEEE ISSCC Dig Tech Papers (2019)
[21]
tinkham Introduction to Superconductivity (2004)
[22]
kadin Introduction to Superconducting Circuits (1999)
[24]
van dijk "The impact of classical control electronics on qubit fidelity" arXiv 1803 06176 (2018)
[26]
PT420-CPA1114-Capacity-Curve (2018)
[29]
dodge Superconducting qubit control with single flux quantum pulses in a multichip module Part II qubit and quasiparticle measurement (2019)
[37]
kelley A Preview of Bristlecone Google's New Quantum Processor (2017)
[38]
knight IBM Raises the Bar With a 50-Qubit Quantum Computer (2017)
[40]
hsu CES 2018 Intel&#x2019;s 49-Qubit Chip Shoots for Quantum Supremacy (2018)
[47]
Fidelity of quantum operations

Line Hjortshøj Pedersen, Niels Martin Møller, Klaus Mølmer

Physics Letters A 10.1016/j.physleta.2007.02.069
[48]
Standard Helium Liquefier/Refrigerator L280/LR280 (2019)
[50]
Introduction to quantum noise, measurement, and amplification

A. A. Clerk, M. H. Devoret, S. M. Girvin et al.

Reviews of Modern Physics 10.1103/revmodphys.82.1155
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