activity
20172022
most citedPeriod-tripling subharmonic oscillations in a driven superconducting resonator

37 citations · 99 across the 4 of their papers we have counts for

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12 papers · 1 filter

quant-ph202217 cited

X-parameter based design and simulation of Josephson traveling-wave parametric amplifiers for quantum computing applications

Kaidong Peng, Rick Poore, Philip Krantz +2

We present an efficient, accurate, and comprehensive analysis framework for generic, multi-port nonlinear parametric circuits, in the presence of dissipation from lossy circuit com…

quant-ph202222 cited

Microwave calibration of qubit drive line components at millikelvin temperatures

Slawomir Simbierowicz, Volodymyr Y. Monarkha, Suren Singh +3

Systematic errors in qubit state preparation arise due to non-idealities in the qubit control lines such as impedance mismatch. Using a data-based methodology of short-open-load ca…

quant-ph202023 cited

Engineering Framework for Optimizing Superconducting Qubit Designs

Fei Yan, Youngkyu Sung, Philip Krantz +6

Superconducting quantum technologies require qubit systems whose properties meet several often conflicting requirements, such as long coherence times and high anharmonicity. Here,…

quant-ph2020

Generating Spatially Entangled Itinerant Photons with Waveguide Quantum Electrodynamics

Bharath Kannan, Daniel Campbell, Francisca Vasconcelos +10

Realizing a fully connected network of quantum processors requires the ability to distribute quantum entanglement. For distant processing nodes, this can be achieved by generating,…

quant-ph2020

Multi-level Quantum Noise Spectroscopy

Youngkyu Sung, Antti Vepsäläinen, Jochen Braumüller +14

System noise identification is crucial to the engineering of robust quantum systems. Although existing quantum noise spectroscopy (QNS) protocols measure an aggregate amount of noi…

quant-ph2020

Programming a quantum computer with quantum instructions

Morten Kjaergaard, Mollie E. Schwartz, Ami Greene +20

The equivalence between the instructions used to define programs and the input data on which the instructions operate is a basic principle of classical computer architectures and p…