arXiv:2512.03193quant-phcs.LG2025-12被引 2

用信号处理方法直接在量子模拟器中实时校准连续脉冲,提升模拟精度。

In Situ Quantum Analog Pulse Characterization via Structured Signal Processing

  • 基于量子信号处理框架,直接从时间演化算符重建平滑脉冲轨迹。
  • 在100次模拟中误差低于0.5%,且对噪声和退相干具有强鲁棒性。
  • 适合需要高精度脉冲控制的模拟器硬件验证,尤其适用于大规模系统。

模拟量子模拟器可直接模拟时变哈密顿量动力学,用于探索相变、淬火动力学及非平衡过程等物理现象。实现精确模拟依赖于高保真度的时变脉冲控制,但现有校准方案针对数字门设计,难以扩展至连续脉冲轨迹学习。本文提出一种原位脉冲轨迹表征算法,将量子信号处理(QSP)框架拓展至时变脉冲分析。结合逻辑层模拟-数字映射范式,该方法仅通过时间有序演化算符查询即可重建平滑脉冲,无需中间测量或额外演化。与传统基于 Trotter 化的方法不同,本方法避免了逻辑分段增加带来的累积局部截断误差导致性能不可扩展下降。通过严格的理论分析与大量数值模拟验证,方法在100次测试中均实现低于0.5%的重建误差,且对状态制备与测量(SPAM)及去极化噪声具有强鲁棒性,为模拟量子模拟器提供轻量化、最优的验证协议,能有效检测主要硬件故障。

原文摘要 · Abstract (English)

Analog quantum simulators can directly emulate time-dependent Hamiltonian dynamics, enabling the exploration of diverse physical phenomena such as phase transitions, quench dynamics, and non-equilibrium processes. Realizing accurate analog simulations requires high-fidelity time-dependent pulse control, yet existing calibration schemes are tailored to digital gate characterization and cannot be readily extended to learn continuous pulse trajectories. We present a characterization algorithm for in situ learning of pulse trajectories by extending the Quantum Signal Processing (QSP) framework to analyze time-dependent pulses. By combining QSP with a logical-level analog-digital mapping paradigm, our method reconstructs a smooth pulse directly from queries of the time-ordered propagator, without requiring mid-circuit measurements or additional evolution. Unlike conventional Trotterization-based methods, our approach avoids unscalable performance degradation arising from accumulated local truncation errors as the logical-level segmentation increases. Through rigorous theoretical analysis and extensive numerical simulations, we demonstrate that our method achieves high accuracy with strong efficiency and robustness against SPAM as well as depolarizing errors, providing a lightweight and optimal validation protocol for analog quantum simulators capable of detecting major hardware faults.

量子模拟脉冲校准信号处理硬件验证

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