论文标题
用被困的离子量子量子量的一般反对对称性哈密顿的量子模拟
Quantum simulation of a general anti-PT-symmetric Hamiltonian with a trapped ion qubit
论文作者
论文摘要
满足平价时间(PT)对称性的非热门系统由于其异国情调而引起了相当大的兴趣。抗PT对称性是PT对称性的重要对应物,并且已经在各种经典系统中进行了研究。尽管具有抗PT对称性的哈密顿量仅与其在全球$ \ pm $ i相中的PT对称对准相对应有所不同,但它们使用entivronment更改信息和能量的方式是完全不同的,这表明与PT-Metresmmetric变体中的抗PPT对称系统中的基本不同动态。此外,神学作品表明,具有反对对称性汉密尔顿的量子(抗对称量子量)具有优于Hermitian Qubits和PT-对称的Quermentions的脱碳特性。到目前为止,对单个量子系统中抗PT对称性的观察仍然难以捉摸。在这里,我们通过设计的微波炉和光学控制脉冲序列实现了单个量子的抗对称哈密顿量。我们通过以不同的耗散速率绘制特征值来表征抗PT相变。量子状态的全部信息也可以通过量子状态层析成像获得。我们的工作允许对反对对称系统的真正开放系统特征进行量子模拟,该系统为利用非富特性属性用于量子信息处理铺平了道路。
Non-Hermitian systems satisfying parity-time (PT) symmetry have aroused considerable interest owing to their exotic features. Anti-PT symmetry is an important counterpart of the PT symmetry, and has been studied in various classical systems. Although a Hamiltonian with anti-PT symmetry only differs from its PT-symmetric counterpart in a global $\pm$ i phase, the ways they change information and energy with the enivronment are completely different, suggesting an essential different dynamics in anti-PT-symmetric systems from their PT -symmetric variants. Moreover, theortical works have shown that qubits with anti-PT-symmetric Hamiltonians (anti-PT-symmetric qubits) have superior decoherence properties over Hermitian qubits, as well as PT-symmetric ones. So far, the observation of anti-PT symmetry in individual quantum systems remains elusive. Here, we implement an anti-PT -symmetric Hamiltonian of a single qubit in a single trapped ion by a designed microwave and optical control-pulse sequence. We characterize the anti-PT phase transition by mapping out the eigenvalues at different dissipation rates. The full inforamtion of the quantum state is also obtained by quantum state tomography. Our work allows quantum simulation of genuine open-system feature of an anti-PT-symmetric system, which paves the way for utilizing non-Hermitian properties for quantum information processing.