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Digital quantum simulation of squeezed states via enhanced bosonic encoding in a superconducting quantum processor

Digital quantum simulation of squeezed states via enhanced bosonic encoding in a superconducting quantum processor

来源:Arxiv_logoArxiv
英文摘要

We present a fully digital approach for simulating single-mode squeezed states on a superconducting quantum processor using an enhanced bosonic encoding strategy. By mapping up to 2^{n} photonic Fock states onto n qubits, our framework leverages Gray-code-based encodings to reduce gate overhead compared to conventional one-hot or binary mappings. We further optimize resource usage by restricting the simulation on Fock states with even number of photons only, effectively doubling the range of photon numbers that can be represented for a given number of qubits. To overcome noise and finite coherence in current hardware, we employ a variational quantum simulation protocol, which adapts shallow, parameterized circuits through iterative optimization. Implemented on the Zuchongzhi-2 superconducting platform, our method demonstrates squeezed-state dynamics across a parameter sweep from vacuum state preparation (r=0) to squeezing levels exceeding the Fock space truncation limit (r>1.63). Experimental results, corroborated by quantum state tomography and Wigner-function analysis, confirm high-fidelity state preparation and demonstrate the potential of Gray-code-inspired techniques for realizing continuous-variable physics on near-term, qubit-based quantum processors.

Hengyue Li、Yusheng Yang、Zhe-Hui Wang、Shuxin Xie、Zilong Zha、Hantao Sun、Jie Chen、Jian Sun、Shenggang Ying

物理学电子技术应用

Hengyue Li,Yusheng Yang,Zhe-Hui Wang,Shuxin Xie,Zilong Zha,Hantao Sun,Jie Chen,Jian Sun,Shenggang Ying.Digital quantum simulation of squeezed states via enhanced bosonic encoding in a superconducting quantum processor[EB/OL].(2025-05-16)[2025-06-08].https://arxiv.org/abs/2505.10895.点此复制

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