Shen Ruizhe, Chen Tianqi, Yang Bo, Lee Ching Hua
Department of Physics, National University of Singapore, Singapore, Singapore.
School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, Singapore.
Nat Commun. 2025 Feb 4;16(1):1340. doi: 10.1038/s41467-025-55953-4.
Lately, the non-Hermitian skin effect (NHSE) has been demonstrated in various classical metamaterials and even ultracold atomic arrays. Yet, its interplay with many-body dynamics have never been experimentally investigated. Here, we report the observation of the NHSE and its many-fermion analog on a universal quantum processor. To implement NHSE accumulation on a quantum computer, the time-evolution circuit not only needs to be non-reciprocal and non-unitary, but must also contain sufficiently many lattice qubits. We demonstrate this by systematically post-selecting ancilla qubits, as demonstrated through two paradigmatic non-reciprocal models on noisy quantum processors, with clear signatures of asymmetric spatial propagation and many-body "Fermi skin" accumulation. To minimize errors from inevitable device noise, time evolution is performed using trainable, variationally optimized quantum circuits. Our demonstration represents an important step in the quantum simulation of non-Hermitian lattices on present-day quantum hardware, and can be readily generalized to more sophisticated many-body models.
最近,非厄米趋肤效应(NHSE)已在各种经典超材料甚至超冷原子阵列中得到证实。然而,其与多体动力学的相互作用从未得到过实验研究。在此,我们报告在通用量子处理器上对非厄米趋肤效应及其多费米子类似物的观测。为了在量子计算机上实现非厄米趋肤效应的积累,时间演化电路不仅需要是非互易和非酉的,而且还必须包含足够多的晶格量子比特。我们通过系统地后选择辅助量子比特来证明这一点,这在有噪声的量子处理器上通过两个典型的非互易模型得到了验证,具有不对称空间传播和多体“费米皮”积累的明显特征。为了最小化不可避免的器件噪声带来的误差,使用可训练的、变分优化的量子电路来执行时间演化。我们的演示代表了在当今量子硬件上对非厄米晶格进行量子模拟的重要一步,并且可以很容易地推广到更复杂的多体模型。