Demonstration of universal parametric entangling gates on a multi-qubit lattice

نویسندگان

  • Matthew Reagor
  • Christopher B Osborn
  • Nikolas Tezak
  • Alexa Staley
  • Guenevere Prawiroatmodjo
  • Michael Scheer
  • Nasser Alidoust
  • Eyob A Sete
  • Nicolas Didier
  • Marcus P da Silva
  • Ezer Acala
  • Joel Angeles
  • Andrew Bestwick
  • Maxwell Block
  • Benjamin Bloom
  • Adam Bradley
  • Catvu Bui
  • Shane Caldwell
  • Lauren Capelluto
  • Rick Chilcott
  • Jeff Cordova
  • Genya Crossman
  • Michael Curtis
  • Saniya Deshpande
  • Tristan El Bouayadi
  • Daniel Girshovich
  • Sabrina Hong
  • Alex Hudson
  • Peter Karalekas
  • Kat Kuang
  • Michael Lenihan
  • Riccardo Manenti
  • Thomas Manning
  • Jayss Marshall
  • Yuvraj Mohan
  • William O'Brien
  • Johannes Otterbach
  • Alexander Papageorge
  • Jean-Philip Paquette
  • Michael Pelstring
  • Anthony Polloreno
  • Vijay Rawat
  • Colm A Ryan
  • Russ Renzas
  • Nick Rubin
  • Damon Russel
  • Michael Rust
  • Diego Scarabelli
  • Michael Selvanayagam
  • Rodney Sinclair
  • Robert Smith
  • Mark Suska
  • Ting-Wai To
  • Mehrnoosh Vahidpour
  • Nagesh Vodrahalli
  • Tyler Whyland
  • Kamal Yadav
  • William Zeng
  • Chad T Rigetti
چکیده

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 gate set for a linear array of four superconducting qubits. An average process fidelity of 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 with 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 these permutations, an average fidelity of ℱ = 91.6 ± 2.6% is observed. These results thus offer a path to a scalable architecture with high selectivity and low cross-talk.

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عنوان ژورنال:

دوره 4  شماره 

صفحات  -

تاریخ انتشار 2018