论文标题

开放晶格场理论的量子算法

Quantum Algorithms for Open Lattice Field Theory

论文作者

Hubisz, Jay, Sambasivam, Bharath, Unmuth-Yockey, Judah

论文摘要

某些统一量子系统的某些方面是通过非富米有效的哈密顿量进化很好地描述的,如Wigner-Weisskopf自发衰减理论中所述。相反,可以通过Wigner-Weisskopf理论的概括来适应任何非热汉密尔顿进化。这证明了新型特征的物理相关性,例如量子动力学中的特殊点,并为在复杂的耦合常数平面中研究许多身体系统开辟了途径。在晶格场理论的情况下,稀疏性将这些渠道带来了对标准化量子硬件有效仿真的承诺。因此,我们考虑了与经历非热时间演化的晶格场理论的铃木液体触发器近似相对应的量子操作,并具有对有限化学势的旋转或仪表模型的研究,具有拓扑术语,可拓扑术语,用于量子相变向量子相变 - 一系列具有符号问题的模型。我们开发了非热量子电路,并在基准上探索了他们的诺言,即具有复杂纵向磁场的量子一维的iSing模型,表明可观察到的物品可以探测Lee-Yang Edge的奇异性。吸引子在复杂耦合空间中的关键点的开发表明,潜力是在近期噪声硬件上进行研究。

Certain aspects of some unitary quantum systems are well-described by evolution via a non-Hermitian effective Hamiltonian, as in the Wigner-Weisskopf theory for spontaneous decay. Conversely, any non-Hermitian Hamiltonian evolution can be accommodated in a corresponding unitary system + environment model via a generalization of Wigner-Weisskopf theory. This demonstrates the physical relevance of novel features such as exceptional points in quantum dynamics, and opens up avenues for studying many body systems in the complex plane of coupling constants. In the case of lattice field theory, sparsity lends these channels the promise of efficient simulation on standardized quantum hardware. We thus consider quantum operations that correspond to Suzuki-Lee-Trotter approximation of lattice field theories undergoing non-Hermitian time evolution, with potential applicability to studies of spin or gauge models at finite chemical potential, with topological terms, to quantum phase transitions - a range of models with sign problems. We develop non-Hermitian quantum circuits and explore their promise on a benchmark, the quantum one-dimensional Ising model with complex longitudinal magnetic field, showing that observables can probe the Lee-Yang edge singularity. The development of attractors past critical points in the space of complex couplings indicates a potential for study on near-term noisy hardware.

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