228 citations · 252 across the 3 of their papers we have counts for
8 papers · 1 filter
Quality, Speed, and Scale: three key attributes to measure the performance of near-term quantum computers
Andrew Wack, Hanhee Paik, Ali Javadi-Abhari +4
Defining the right metrics to properly represent the performance of a quantum computer is critical to both users and developers of a computing system. In this white paper, we ident…
Implementation of the XY interaction family with calibration of a single pulse
Deanna M. Abrams, Nicolas Didier, Blake R. Johnson +2
Near-term applications of quantum information processors will rely on optimized circuit implementations to minimize gate depth and therefore mitigate the impact of gate errors in n…
Assessing the Influence of Broadband Instrumentation Noise on Parametrically Modulated Superconducting Qubits
E. Schuyler Fried, Prasahnt Sivarajah, Nicolas Didier +4
With superconducting transmon qubits --- a promising platform for quantum information processing --- two-qubit gates can be performed using AC signals to modulate a tunable transmo…
Methods for Measuring Magnetic Flux Crosstalk Between Tunable Transmons
Deanna M. Abrams, Nicolas Didier, Shane A. Caldwell +2
In the gate model of quantum computing, a program is typically decomposed into a sequence of 1- and 2-qubit gates that are realized as control pulses acting on the system. A key re…
Cross-resonance interactions between superconducting qubits with variable detuning
Matthew Ware, Blake R. Johnson, Jay M. Gambetta +3
Cross-resonance interactions are a promising way to implement all-microwave two-qubit gates with fixed-frequency qubits. In this work, we study the dependence of the cross-resonanc…
Demonstration of a Parametrically-Activated Entangling Gate Protected from Flux Noise
Sabrina S. Hong, Alexander T. Papageorge, Prasahnt Sivarajah +7
In state-of-the-art quantum computing platforms, including superconducting qubits and trapped ions, imperfections in the 2-qubit entangling gates are the dominant contributions of…