Demonstration of Universal Parametric Entangling Gates on a Multi-Qubit Lattice

We show that parametric coupling techniques can be used to generate selective entangling interactions for multi-qubit processors. By inducing coherent population exchange between adjacent qubits under frequency modulation, we implement a universal gateset for a linear array of four superconducting q...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:arXiv.org 2018-02
Hauptverfasser: Reagor, M, Osborn, C B, Tezak, N, Staley, A, Prawiroatmodjo, G, Scheer, M, Alidoust, N, Sete, E A, Didier, N, da Silva, M P, Acala, E, Angeles, J, Bestwick, A, Block, M, Bloom, B, Bradley, A, Bui, C, Caldwell, S, Capelluto, L, Chilcott, R, Cordova, J, Crossman, G, Curtis, M, Deshpande, S, T El Bouayadi, Girshovich, D, Hong, S, Hudson, A, Karalekas, P, Kuang, K, Lenihan, M, Manenti, R, Manning, T, Marshall, J, Mohan, Y, O'Brien, W, Otterbach, J, Papageorge, A, J -P Paquette, Pelstring, M, Polloreno, A, Rawat, V, Ryan, C A, Renzas, R, Rubin, N, Russell, D, Rust, M, Scarabelli, D, Selvanayagam, M, Sinclair, R, Smith, R, Suska, M, T -W To, Vahidpour, M, Vodrahalli, N, Whyland, T, Yadav, K, Zeng, W, Rigetti, C T
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:We show that parametric coupling techniques can be used to generate selective entangling interactions for multi-qubit processors. By inducing coherent population exchange between adjacent qubits under frequency modulation, we implement a universal gateset for a linear array of four superconducting qubits. An average process fidelity of \(\mathcal{F}=93\%\) is estimated for three two-qubit gates via quantum process tomography. We establish the suitability of these techniques for computation by preparing a four-qubit maximally entangled state and comparing the estimated state fidelity against the expected performance of the individual entangling gates. In addition, we prepare an eight-qubit register in all possible bitstring permutations and monitor the fidelity of a two-qubit gate across one pair of these qubits. Across all such permutations, an average fidelity of \(\mathcal{F}=91.6\pm2.6\%\) is observed. These results thus offer a path to a scalable architecture with high selectivity and low crosstalk.
ISSN:2331-8422
DOI:10.48550/arxiv.1706.06570