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Uncertainty relations for noise and disturbance in generalized quantum measurements

机译:广义量子测量中噪声和干扰的不确定性关系

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Heisenberg's uncertainty relation for measurement noise and disturbance is commonly understood to state that in any measurement the product of the position measurement noise and the momentum disturbance is not less than Planck's constant divided by 4pi. However, it has been shown in many ways that this relation holds only for a restricted class of measuring apparatuses in the most general formulation of measuring processes. Here, Heisenberg's uncertainty relation is generalized to a relation that holds for all the possible quantum measurements, from which rigorous conditions are obtained for measuring apparatuses to satisfy Heisenberg's relation. In particular, every apparatus with the noise and the disturbance statistically independent from the measured object is proven to satisfy Heisenberg's relation. For this purpose, all the possible quantum measurements are characterized by naturally acceptable axioms. Then, a mathematical notion of the distance between probability operator valued measures and observables is introduced and the basic properties are explored. Based on this notion, the measurement noise and disturbance are naturally defined for any quantum measurements in a model independent formulation. Under this formulation, various relations for noise and disturbance are also derived for apparatuses with independent noise, independent disturbance, unbiased noise, and unbiased disturbance as well as noiseless apparatuses and nondisturbing apparatuses. Two models of position measurements are also discussed in the light of the new uncertainty relations to show that Heisenberg's relation can be violated even by approximately repeatable position measurements. (C) 2004 Elsevier Inc. All rights reserved.
机译:海森堡对于测量噪声和扰动的不确定性关系通常被理解为指出,在任何测量中,位置测量噪声与动量扰动的乘积不得小于普朗克常数除以4pi。然而,已经以多种方式表明,这种关系仅在最通用的测量过程公式中仅适用于有限类的测量设备。在这里,海森堡的不确定性关系被概括为对所有可能的量子测量都成立的关系,从中获得了满足测量设备满足海森堡关系的严格条件。尤其是,每个噪声和干扰在统计上均独立于被测对象的设备都被证明满足海森堡的关系。为此,所有可能的量子测量均以自然可接受的公理为特征。然后,介绍了概率算子值度量与可观测值之间距离的数学概念,并探讨了基本属性。基于此概念,自然而然地在与模型无关的公式中为任何量子测量定义了测量噪声和干扰。根据该公式,对于具有独立噪声,独立干扰,无偏噪声和无偏干扰的设备以及无噪声设备和无干扰设备,也得出了噪声和干扰的各种关系。根据新的不确定性关系,还讨论了两种位置测量模型,以表明即使近似重复的位置测量也可能违反海森堡关系。 (C)2004 Elsevier Inc.保留所有权利。

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