论文标题
对于量子场理论的每个可观察到的渐近测量方案
Asymptotic measurement schemes for every observable of a quantum field theory
论文作者
论文摘要
在量子测量理论中,一种测量方案描述了如何使用探针间接测量给定系统的可观察到。测量方案涉及探针理论的规范,初始探针状态,可观察到的探针和系统与探针之间的耦合,因此(在预期,耦合后可观察到的探测器的测量值都可以在系统状态中观察到系统可观察到的系统的结果。最近的工作表明,如何在模型无关的量子场理论(QFT)的背景下描述局部和因果测量方案,但尚未解决所有系统可观察物的问题是否存在此类测量方案的问题。在这里,我们提出了这个问题的两种治疗方法。第一个是原理证明,如果一个人通过允许非紧密耦合区域放松QFT测量方案上的条件之一,则为每个可观察到的实际线性标量场的局部观察到的测量方案提供了一个测量方案。其次,限制了紧凑的耦合区域,我们为量化理论的每个局部观察到的局部观察到明确构建渐近测量方案。更确切地说,我们表明,对于每个本地系统可观察的$ a $,都有相关的测量方案集合,用于系统可观察到收敛到$ a $的系统。该集合中的所有测量方案具有相同的固定紧凑耦合区和相同的处理区域。系统可观察物的收敛尤其是在田间代数或Weyl代数上合适状态的GNS表示中。通过这种方式,我们表明可以使用局部耦合探针理论渐近地测量每个可观察的可观察到的。
In quantum measurement theory, a measurement scheme describes how an observable of a given system can be measured indirectly using a probe. The measurement scheme involves the specification of a probe theory, an initial probe state, a probe observable and a coupling between the system and the probe, so that a measurement of the probe observable after the coupling has ceased reproduces (in expectation) the result of measuring the system observable in the system state. Recent work has shown how local and causal measurement schemes may be described in the context of model-independent quantum field theory (QFT), but has not addressed the question of whether such measurement schemes exist for all system observables. Here, we present two treatments of this question. The first is a proof of principle which provides a measurement scheme for every local observable of the quantized real linear scalar field if one relaxes one of the conditions on a QFT measurement scheme by allowing a non-compact coupling region. Secondly, restricting to compact coupling regions, we explicitly construct asymptotic measurement schemes for every local observable of the quantized theory. More precisely, we show that for every local system observable $A$ there is an associated collection of measurement schemes for system observables that converge to $A$. All the measurement schemes in this collection have the same fixed compact coupling zone and the same processing region. The convergence of the system observables holds, in particular, in GNS representations of suitable states on the field algebra or the Weyl algebra. In this way, we show that every observable can be asymptotically measured using locally coupled probe theories.