Under the principle that quantum-mechanical observables are invariant under relevant symmetry transformations, we explore how the usual, non-invariant quantities may capture measurement statistics. Using a relativisation mapping, viewed as the incorporation of a quantum reference frame, we show that the usual quantum description approximates the relative one precisely when the reference system admits an appropriate localisable quantity and a localised state. From this follows a new perspective on the nature and reality of quantum superpositions and optical coherence
The quantum reference frames program is based on the idea that reference frames should be treated as...
The relativity to the measuring device in quantum theory, i.e. the covariance of local dynamical var...
In this work we attempt to confront the orthodox widespread claim present in the foundational litera...
Under the principle that quantum mechanical observables are invariant under relevant symmetry transf...
In physics, every observation is made with respect to a frame of reference. Although refer-ence fram...
Transformations between reference frames play a crucial role in our understanding of physical proces...
We propose that observables in quantum theory are properly understood as representatives of symmetry...
Quantum information theorists have created axiomatic reconstructions of quantum mechanics (QM) that ...
In a quantum world, reference frames are ultimately quantum systems too -- but what does it mean to ...
One of the most basic notions in physics is the partitioning of a system into subsystems, and the st...
We consider symmetry as a foundational concept in quantum mechanics and rewrite quantum me-chanics a...
In physics, a reference frame is an abstract coordinate system that specifies observations within th...
We consider the process of changing reference frames in the case where the reference frames are quan...
The measurement problem is addressed from the viewpoint that it is the distinguishability between th...
In classical physics, it is possible in principle to predict with certainty the outcome of any measu...
The quantum reference frames program is based on the idea that reference frames should be treated as...
The relativity to the measuring device in quantum theory, i.e. the covariance of local dynamical var...
In this work we attempt to confront the orthodox widespread claim present in the foundational litera...
Under the principle that quantum mechanical observables are invariant under relevant symmetry transf...
In physics, every observation is made with respect to a frame of reference. Although refer-ence fram...
Transformations between reference frames play a crucial role in our understanding of physical proces...
We propose that observables in quantum theory are properly understood as representatives of symmetry...
Quantum information theorists have created axiomatic reconstructions of quantum mechanics (QM) that ...
In a quantum world, reference frames are ultimately quantum systems too -- but what does it mean to ...
One of the most basic notions in physics is the partitioning of a system into subsystems, and the st...
We consider symmetry as a foundational concept in quantum mechanics and rewrite quantum me-chanics a...
In physics, a reference frame is an abstract coordinate system that specifies observations within th...
We consider the process of changing reference frames in the case where the reference frames are quan...
The measurement problem is addressed from the viewpoint that it is the distinguishability between th...
In classical physics, it is possible in principle to predict with certainty the outcome of any measu...
The quantum reference frames program is based on the idea that reference frames should be treated as...
The relativity to the measuring device in quantum theory, i.e. the covariance of local dynamical var...
In this work we attempt to confront the orthodox widespread claim present in the foundational litera...