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Quantum Sensors for the Generating Functional of Interacting Quantum Field Theories

机译:用于相互作用域理论的发电功能的量子传感器

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Difficult problems described in terms of interacting quantum fields evolving in real time or out of equilibrium abound in condensed-matter and high-energy physics. Addressing such problems via controlled experiments in atomic, molecular, and optical physics would be a breakthrough in the field of quantum simulations. In this work, we present a quantum-sensing protocol to measure the generating functional of an interacting quantum field theory and, with it, all the relevant information about its in- or out-of-equilibrium phenomena. Our protocol can be understood as a collective interferometric scheme based on a generalization of the notion of Schwinger sources in quantum field theories, which make it possible to probe the generating functional. We show that our scheme can be realized in crystals of trapped ions acting as analog quantum simulators of self-interacting scalar quantum field theories.
机译:在冷凝物和高能量物理学中相比,在实时演化的量子场或高能量物理学中的难以相互作用的难题。通过原子,分子和光学物理学的受控实验解决此类问题将是量子模拟领域的突破。在这项工作中,我们提出了一种量子传感协议,以测量交互量子场理论的产生功能,并用它,有关其进出或超均衡现象的所有相关信息。我们的协议可以理解为基于量子域理论中Schwinger来源概念的集体干涉方案,这使得可以探测产生功能。我们表明我们的方案可以实现作为自相互作用标量子域理论的模拟量子模拟器的捕获离子的晶体中。

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