We present a description of the measurement process based on the parametric representation with environmental coherent states. This representation is specifically tailored for studying quantum systems whose environment needs being considered through the quantum-to-classical crossover. Focusing upon projective measures, and exploiting the connection between large- N quantum theories and the classical limit of related ones, we manage to push our description beyond the pre-measurement step. This allows us to show that the outcome production follows from a global-symmetry breaking, entailing the observed system's state reduction, and that the statistical nature of the process is brought about, together with the Born's rule, by the macroscopic character of the measuring apparatus.

Parametric description of the quantum measurement process / Liuzzo-Scorpo, P.; Cuccoli, A.; Verrucchi, P.. - In: EUROPHYSICS LETTERS. - ISSN 0295-5075. - STAMPA. - 111:(2015), pp. 40008-40008. [10.1209/0295-5075/111/40008]

Parametric description of the quantum measurement process

CUCCOLI, ALESSANDRO;VERRUCCHI, PAOLA
2015

Abstract

We present a description of the measurement process based on the parametric representation with environmental coherent states. This representation is specifically tailored for studying quantum systems whose environment needs being considered through the quantum-to-classical crossover. Focusing upon projective measures, and exploiting the connection between large- N quantum theories and the classical limit of related ones, we manage to push our description beyond the pre-measurement step. This allows us to show that the outcome production follows from a global-symmetry breaking, entailing the observed system's state reduction, and that the statistical nature of the process is brought about, together with the Born's rule, by the macroscopic character of the measuring apparatus.
2015
111
40008
40008
Liuzzo-Scorpo, P.; Cuccoli, A.; Verrucchi, P.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1007525
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