We introduce the notion of “separation of conditions” meaning that a description of statistical data obtained from experiments, performed under a set of different conditions, allows for a decomposition such that each partial description depends on mutually exclusive subsets of these conditions. Descriptions that allow a separation of conditions are shown to entail the basic mathematical framework of quantum theory. The Stern-Gerlach and the Einstein–Podolsky–Rosen-Bohm experiment with three, respectively nine possible outcomes are used to illustrate how the separation of conditions can be used to construct their quantum theoretical descriptions. It is shown that the mathematical structure of separated descriptions implies that, under certai...
Entanglement, or quantum inseparability, is a crucial resource in quantum information applications, ...
The aim of the paper is to derive essential elements of quantum mechanics from a parametric structur...
Abstract. The Quantum Mechanics is interpreted, in this article, in a simple and direct way. By comb...
We introduce the notion of “separation of conditions” meaning that a description of statistical data...
We introduce the notion of “separation of conditions” meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
Contains fulltext : 212284.pdf (publisher's version ) (Open Access
Separation of the Schroedinger equation for molecular dynamics into sets of variables can sometimes ...
We present a general formalism with the aim of describing the situation of an entity, how it is, ho...
Separation of the Schrödinger equation for molecular dynamics into sets of variables can sometimes b...
In order to elucidate the properties currently attributed to ideal measurements, one must explain ho...
Entanglement, or quantum inseparability, is a crucial resource in quantum information applications, ...
The aim of the paper is to derive essential elements of quantum mechanics from a parametric structur...
Abstract. The Quantum Mechanics is interpreted, in this article, in a simple and direct way. By comb...
We introduce the notion of “separation of conditions” meaning that a description of statistical data...
We introduce the notion of “separation of conditions” meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
We introduce the notion of "separation of conditions" meaning that a description of statistical data...
Contains fulltext : 212284.pdf (publisher's version ) (Open Access
Separation of the Schroedinger equation for molecular dynamics into sets of variables can sometimes ...
We present a general formalism with the aim of describing the situation of an entity, how it is, ho...
Separation of the Schrödinger equation for molecular dynamics into sets of variables can sometimes b...
In order to elucidate the properties currently attributed to ideal measurements, one must explain ho...
Entanglement, or quantum inseparability, is a crucial resource in quantum information applications, ...
The aim of the paper is to derive essential elements of quantum mechanics from a parametric structur...
Abstract. The Quantum Mechanics is interpreted, in this article, in a simple and direct way. By comb...