English

Control of the $ZZ$ coupling between Kerr-cat qubits via transmon couplers

Quantum Physics 2024-01-23 v4

Abstract

Kerr-cat qubits are a promising candidate for fault-tolerant quantum computers owing to the biased nature of their errors. The ZZZZ coupling between the qubits can be utilized for a two-qubit entangling gate, but the residual coupling called ZZZZ crosstalk is detrimental to precise computing. In order to resolve this problem, we propose a tunable ZZZZ-coupling scheme using two transmon couplers. By setting the detunings of the two couplers at opposite values, the residual ZZZZ couplings via the two couplers cancel each other out. We also apply our scheme to the Rzz(Θ)R_{zz}(\Theta) gate (ZZZZ rotation with angle Θ\Theta), one of the two-qubit entangling gates. We numerically show that the fidelity of the Rzz(π/2)R_{zz}(-\pi/2) gate is higher than 99.9% in a case of 1616-ns gate time and without decoherence.

Keywords

Cite

@article{arxiv.2303.16622,
  title  = {Control of the $ZZ$ coupling between Kerr-cat qubits via transmon couplers},
  author = {Takaaki Aoki and Taro Kanao and Hayato Goto and Shiro Kawabata and Shumpei Masuda},
  journal= {arXiv preprint arXiv:2303.16622},
  year   = {2024}
}

Comments

14 pages, 7 figures