Title of article
Quantum Correlations as Correlations of Classical Gaussian Signals: “Entanglement” at the Subquantum Level
Author/Authors
Khrennikov، نويسنده , , Andrei، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
16
From page
213
To page
228
Abstract
We show that correlations between observables on composite quantum systems can be mathematically represented as correlations of quadratic forms of classical Gaussian signals. The formalism covers correlations for entangled quantum systems; for example, measurements of spin projections for two electrons in the singlet state. In this paper we show that at the subquantum level all quantum systems are correlated including systems in factorizable states. However, in the latter case quadratic forms of the prequantum fields (at the subquantum level these forms represent quantum observables) are uncorrelated. Thus “subquantum entanglement” for prequantum fields representing quantum systems in factorizable states cannot be found by using quantum observables. We have to go beyond quantum mechanics. Coupling with generalized quantum models of Mielnik and Zyczkowski are discussed.
Keywords
classical random field , quantum and classical correlations , subquantum entanglement for factorizable states , totality of entanglement
Journal title
Reports on Mathematical Physics
Serial Year
2012
Journal title
Reports on Mathematical Physics
Record number
1990498
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