论文标题

对多数哈密顿人的有效且强大的估计

Efficient and robust estimation of many-qubit Hamiltonians

论文作者

França, Daniel Stilck, Markovich, Liubov A., Dobrovitski, V. V., Werner, Albert H., Borregaard, Johannes

论文摘要

表征量子机械系统的相互作用和动力学是量子技术开发的重要任务。我们基于使用多项式插值来表征多个Qubit设备的基础汉密尔顿动力学和马尔可夫噪声的多项式插值来提出一个有效的协议。对于有限范围的动力学,我们的协议指数放宽了测量的必要时间分辨率,并且与以前的方法相比,四次降低了总体样本复杂性。此外,我们表明我们的协议可以表征具有代数衰减相互作用的系统的动力学。协议的实施仅需要制备产品状态和单量测量。此外,我们开发了一种具有独立感兴趣的量子通道的阴影断层扫描方法。该协议可用于并行化以学习哈密顿量,使其适用于当前和未来量子设备的表征。

Characterizing the interactions and dynamics of quantum mechanical systems is an essential task in the development of quantum technologies. We propose an efficient protocol based on the estimation of the time derivatives of few qubit observables using polynomial interpolation for characterizing the underlying Hamiltonian dynamics and Markovian noise of a multi-qubit device. For finite range dynamics, our protocol exponentially relaxes the necessary time resolution of the measurements and quadratically reduces the overall sample complexity compared to previous approaches. Furthermore, we show that our protocol can characterize the dynamics of systems with algebraically decaying interactions. The implementation of the protocol requires only the preparation of product states and single-qubit measurements. Furthermore, we develop a shadow tomography method for quantum channels that is of independent interest. This protocol can be used to parallelize to learn the Hamiltonian, rendering it applicable for the characterization of both current and future quantum devices.

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