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Small-world complex network generation on a digital quantum processor.
Jones, Eric B; Hillberry, Logan E; Jones, Matthew T; Fasihi, Mina; Roushan, Pedram; Jiang, Zhang; Ho, Alan; Neill, Charles; Ostby, Eric; Graf, Peter; Kapit, Eliot; Carr, Lincoln D.
Afiliação
  • Jones EB; National Renewable Energy Laboratory, Golden, CO, 80401, USA. eric.jones@coldquanta.com.
  • Hillberry LE; ColdQuanta Inc., Boulder, CO, 80301, USA. eric.jones@coldquanta.com.
  • Jones MT; Department of Physics, University of Texas, Austin, TX, 78712, USA.
  • Fasihi M; Department of Physics, Colorado School of Mines, Golden, CO, 80401, USA.
  • Roushan P; NVIDIA Corporation, Boulder, CO, 80302, USA.
  • Jiang Z; Department of Physics, Colorado School of Mines, Golden, CO, 80401, USA.
  • Ho A; Google Quantum AI, Santa Barbara, CA, 93117, USA.
  • Neill C; Google Quantum AI, Santa Barbara, CA, 93117, USA.
  • Ostby E; Google Quantum AI, Santa Barbara, CA, 93117, USA.
  • Graf P; Google Quantum AI, Santa Barbara, CA, 93117, USA.
  • Kapit E; Google Quantum AI, Santa Barbara, CA, 93117, USA.
  • Carr LD; National Renewable Energy Laboratory, Golden, CO, 80401, USA.
Nat Commun ; 13(1): 4483, 2022 Aug 02.
Article em En | MEDLINE | ID: mdl-35918333
ABSTRACT
Quantum cellular automata (QCA) evolve qubits in a quantum circuit depending only on the states of their neighborhoods and model how rich physical complexity can emerge from a simple set of underlying dynamical rules. The inability of classical computers to simulate large quantum systems hinders the elucidation of quantum cellular automata, but quantum computers offer an ideal simulation platform. Here, we experimentally realize QCA on a digital quantum processor, simulating a one-dimensional Goldilocks rule on chains of up to 23 superconducting qubits. We calculate calibrated and error-mitigated population dynamics and complex network measures, which indicate the formation of small-world mutual information networks. These networks decohere at fixed circuit depth independent of system size, the largest of which corresponding to 1,056 two-qubit gates. Such computations may enable the employment of QCA in applications like the simulation of strongly-correlated matter or beyond-classical computational demonstrations.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nat Commun Assunto da revista: BIOLOGIA / CIENCIA Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nat Commun Assunto da revista: BIOLOGIA / CIENCIA Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Estados Unidos
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