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Engineering Bosonic Codes with Quantum Lattice Gates

Engineering Bosonic Codes with Quantum Lattice Gates

来源:Arxiv_logoArxiv
英文摘要

Bosonic codes offer a hardware-efficient approach to encoding and protecting quantum information with a single continuous-variable bosonic system. In this paper, we introduce a new universal quantum gate set composed of only one type of gate element, which we call the quantum lattice gate, to engineer bosonic code states for fault-tolerant quantum computing. We develop a systematic framework for code state engineering based on the Floquet Hamiltonian engineering, where the target Hamiltonian is constructed directly from the given target state(s). We apply our method to three basic code state engineering processes, including single code state preparation, code space embedding and code space transformation. We explore the application of our method to automatic quantum error correction against single-photon loss with four-legged cat codes. Our proposal is particularly well-suited for superconducting circuit architectures with Josephson junctions, where the full nonlinearity of Josephson junction potential is harnessed as a quantum resource and the quantum lattice gate can be implemented on a sub-nanosecond timescale.

Lingzhen Guo、Lei Du、Tangyou Huang

自动化技术、自动化技术设备

Lingzhen Guo,Lei Du,Tangyou Huang.Engineering Bosonic Codes with Quantum Lattice Gates[EB/OL].(2024-10-22)[2025-04-24].https://arxiv.org/abs/2410.17069.点此复制

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