most citedImproved fluxonium readout through dynamic flux pulsing

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quant-ph2025

Small Quantum Low Density Parity Check Codes for Near-Term Experiments

Christian Kraglund Andersen, Eliška Greplová

It is widely accepted that quantum error correction is essential for realizing large-scale fault-tolerant quantum computing. Recent experiments have demonstrated error correction c…

quant-ph2025

Single-Qubit Gates Beyond the Rotating-Wave Approximation for Strongly Anharmonic Low-Frequency Qubits

Martijn F. S. Zwanenburg, Siddharth Singh, Eugene Y. Huang +5

Single-qubit gates are in many quantum platforms applied using a linear drive resonant with the qubit transition frequency which is often theoretically described within the rotatin…

quant-ph2025

Calibrating Magnetic Flux Control in Superconducting Circuits by Compensating Distortions on Time Scales from Nanoseconds up to Tens of Microseconds

Christoph Hellings, Nathan Lacroix, Ants Remm +8

Fast tuning of the transition frequency of superconducting qubits using magnetic flux is essential, for example, for realizing high-fidelity two-qubit gates with low leakage or for…

quant-ph2024

Energy participation ratio analysis for very anharmonic superconducting circuits

Figen Yilmaz, Siddharth Singh, Martijn F. S. Zwanenburg +3

Superconducting circuits are being employed for large-scale quantum devices, and a pertinent challenge is to perform accurate numerical simulations of device parameters. One of the…

quant-ph20241 cited

Improved fluxonium readout through dynamic flux pulsing

Taryn V. Stefanski, Figen Yilmaz, Eugene Y. Huang +5

The ability to perform rapid, high fidelity readout of a qubit state is an important requirement for quantum algorithms and, in particular, for enabling operations such as mid-circ…