English

Long-distance transmon coupler with CZ gate fidelity above $99.8\%$

Quantum Physics 2024-08-20 v2

Abstract

Tunable coupling of superconducting qubits has been widely studied due to its importance for isolated gate operations in scalable quantum processor architectures. Here, we demonstrate a tunable qubit-qubit coupler based on a floating transmon device which allows us to place qubits at least 2 mm apart from each other while maintaining over 50 MHz coupling between the coupler and the qubits. In the introduced tunable-coupler design, both the qubit-qubit and the qubit-coupler couplings are mediated by two waveguides instead of relying on direct capacitive couplings between the components, reducing the impact of the qubit-qubit distance on the couplings. This leaves space for each qubit to have an individual readout resonator and a Purcell filter needed for fast high-fidelity readout. In addition, the large qubit-qubit distance reduces unwanted non-nearest neighbor coupling and allows multiple control lines to cross over the structure with minimal crosstalk. Using the proposed flexible and scalable architecture, we demonstrate a controlled-ZZ gate with (99.81±0.02)%(99.81 \pm 0.02)\% fidelity.

Keywords

Cite

@article{arxiv.2208.09460,
  title  = {Long-distance transmon coupler with CZ gate fidelity above $99.8\%$},
  author = {Fabian Marxer and Antti Vepsäläinen and Shan W. Jolin and Jani Tuorila and Alessandro Landra and Caspar Ockeloen-Korppi and Wei Liu and Olli Ahonen and Adrian Auer and Lucien Belzane and Ville Bergholm and Chun Fai Chan and Kok Wai Chan and Tuukka Hiltunen and Juho Hotari and Eric Hyyppä and Joni Ikonen and David Janzso and Miikka Koistinen and Janne Kotilahti and Tianyi Li and Jyrgen Luus and Miha Papic and Matti Partanen and Jukka Räbinä and Jari Rosti and Mykhailo Savytskyi and Marko Seppälä and Vasilii Sevriuk and Eelis Takala and Brian Tarasinski and Manish J. Thapa and Francesca Tosto and Natalia Vorobeva and Liuqi Yu and Kuan Yen Tan and Juha Hassel and Mikko Möttönen and Johannes Heinsoo},
  journal= {arXiv preprint arXiv:2208.09460},
  year   = {2024}
}

Comments

24 pages, 12 figures, Figure 1 updated, Appendix A extended