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Circuit-based digital adiabatic quantum simulation and pseudoquantum simulation as new approaches to lattice gauge theory

机译:基于电路的数字绝热量子仿真和伪Quantum仿真作为晶格仪表理论的新方法

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A bstract Gauge theory is the framework of the Standard Model of particle physics and is also important in condensed matter physics. As its major non-perturbative approach, lattice gauge theory is traditionally implemented using Monte Carlo simulation, consequently it usually suffers such problems as the Fermion sign problem and the lack of real-time dynamics. Hopefully they can be avoided by using quantum simulation, which simulates quantum systems by using controllable true quantum processes. The field of quantum simulation is under rapid development. Here we present a circuit-based digital scheme of quantum simulation of quantum ?_(2)lattice gauge theory in 2 + 1 and 3 + 1 dimensions, using quantum adiabatic algorithms implemented in terms of universal quantum gates. Our algorithm generalizes the Trotter and symmetric decompositions to the case that the Hamiltonian varies at each step in the decomposition. Furthermore, we carry through a complete demonstration of this scheme in classical GPU simulator, and obtain key features of quantum ?_(2)lattice gauge theory, including quantum phase transitions, topological properties, gauge invariance and duality. Hereby dubbed pseudoquantum simulation, classical demonstration of quantum simulation in state-of-art fast computers not only facilitates the development of schemes and algorithms of real quantum simulation, but also represents a new approach of practical computation.
机译:Bstract仪表理论是粒子物理标准模型的框架,在冷凝物理学中也很重要。作为其主要的非扰动方法,格子仪表理论传统上使用Monte Carlo模拟实施,因此它通常会遭受Fermion标志问题和缺乏实时动态的问题。希望通过使用量子仿真可以避免它们,通过使用可控的真正量子过程来模拟量子系统。量子仿真领域正在快速发展。这里,我们提出量子的量子仿真的基于电路的数字方案?_(2)格点规范理论在2 + 1和3 + 1米的尺寸,使用量子在通用量子门方面实现绝热算法。我们的算法概括了跑步者和对称分解,以便汉密尔顿人在分解中的每个步骤中变化的情况。此外,我们通过在经典GPU模拟器中完成该方案的完整演示,并获得量子α_(2)格式仪表理论的关键特征,包括量子相变,拓扑特性,仪表不变性和二元性。在此被称为pseudoquantum模拟,在国家的最先进的快速量子计算机模拟的经典示范,不仅有利于方案和真正的量子仿真算法的发展,同时也代表了实际计算的新方法。

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