Recent years have witnessed a controversy over Heisenberg’s famous error-disturbance relation. Here the conflict is resolved by way of an analysis of the possible conceptualizations of measurement error and disturbance in quantum mechanics. Two approaches to adapting the classic notion of root-mean-square error to quantum measurements are discussed. One is based on the concept of a noise operator; its natural operational content is that of a mean deviation of the values of two observables measured jointly, and thus its applicability is limited to cases where such joint measurements are available. The second error measure quantifies the differences between two probability distributions obtained in separate runs of measurements and is of unre...
In quantum physics, measurement error and disturbance were first naively thought to be simply constr...
Some measurements in quantum mechanics disturb each other. This has puzzled physicists since the for...
The Heisenberg uncertainty relation for measurement noise and disturbance states that any position m...
Recent years have witnessed a controversy over Heisenberg’s famous error-disturbance relation. Here ...
Reports on experiments recently performed in Vienna [Erhard et al, Nature Phys. 8, 185 (2012)] and T...
The quantification of the "measurement uncertainty"aspect of Heisenberg's uncertainty principle - th...
While the slogan “no measurement without disturbance” has established itself under the name of the H...
Reports on experiments recently performed in Vienna [Erhard et al., Nature Phys. 8, 185 (2012)] and ...
Heisenberg's uncertainty principle is one of the main tenets of quantum theory. Nevertheless, and de...
In standard formulations of the uncertainty principle, two fundamental features are typically cast a...
We revisit the definitions of error and disturbance recently used in error-disturbance inequalities ...
The notions of error and disturbance appearing in quantum uncertainty relations are often quantified...
Two generalizations of a known approach to the joint measurement of position and momentum to the joi...
We introduce information-theoretic definitions for noise and disturbance in quantum measurements and...
Common misconceptions on the Heisenberg principle are reviewed, and the original spirit of the princ...
In quantum physics, measurement error and disturbance were first naively thought to be simply constr...
Some measurements in quantum mechanics disturb each other. This has puzzled physicists since the for...
The Heisenberg uncertainty relation for measurement noise and disturbance states that any position m...
Recent years have witnessed a controversy over Heisenberg’s famous error-disturbance relation. Here ...
Reports on experiments recently performed in Vienna [Erhard et al, Nature Phys. 8, 185 (2012)] and T...
The quantification of the "measurement uncertainty"aspect of Heisenberg's uncertainty principle - th...
While the slogan “no measurement without disturbance” has established itself under the name of the H...
Reports on experiments recently performed in Vienna [Erhard et al., Nature Phys. 8, 185 (2012)] and ...
Heisenberg's uncertainty principle is one of the main tenets of quantum theory. Nevertheless, and de...
In standard formulations of the uncertainty principle, two fundamental features are typically cast a...
We revisit the definitions of error and disturbance recently used in error-disturbance inequalities ...
The notions of error and disturbance appearing in quantum uncertainty relations are often quantified...
Two generalizations of a known approach to the joint measurement of position and momentum to the joi...
We introduce information-theoretic definitions for noise and disturbance in quantum measurements and...
Common misconceptions on the Heisenberg principle are reviewed, and the original spirit of the princ...
In quantum physics, measurement error and disturbance were first naively thought to be simply constr...
Some measurements in quantum mechanics disturb each other. This has puzzled physicists since the for...
The Heisenberg uncertainty relation for measurement noise and disturbance states that any position m...