External control of qubit-photon interaction and multi-qubit reset in a dissipative quantum network

Xian Peng Zhang, Li Tuo Shen, Yuan Zhang, Luyan Sun, Huaizhi Wu, Zhen Biao Yang*, Zhang Qi Yin*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

A quantum network is a promising quantum many-body system because of its tailored geometry and controllable interaction. Here, we propose an external control scheme for the qubit-photon interaction and multiqubit reset in a dissipative quantum network, which comprises superconducting circuit chains with microwave drives and filter-filter couplings. The traditional multiqubit reset of the quantum network requires physically disconnected qubits to prevent their entanglement. However, we use an original effect of dissipation, i.e., consuming the entanglement generated by qubits’ interaction, to achieve an external control of the multiqubit reset in an always-connected superconducting circuit. The reset time is independent of the number of qubits in the quantum network. Our proposal can tolerate considerable fluctuations in the system parameters and can be applicable to higher-dimensional quantum networks.

Original languageEnglish
Article number250311
JournalScience China: Physics, Mechanics and Astronomy
Volume64
Issue number5
DOIs
Publication statusPublished - May 2021

Keywords

  • 03.65.Yz
  • 03.67.-a
  • 03.67.Lx
  • 42.50.Ct
  • quantum computation
  • quantum network
  • quantum reservior engineering

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