Alberto Rimini
University of Pavia
60 Papers
211 Citations
Alberto Rimini is an academic researcher from University of Pavia. The author has contributed to research in topics: Quantum process & Quantum statistical mechanics. The author has an hindex of 19, co-authored 60 publications. Previous affiliations of Alberto Rimini include Istituto Nazionale di Fisica Nucleare.
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Papers
Unified dynamics for microscopic and macroscopic systems
TL;DR: A modified quantum dynamics for the description of macroscopic objects is constructed and it is shown that it forbids the occurrence of linear superpositions of states localized in far-away spatial regions and induces an evolution agreeing with classical mechanics.
3K
Markov processes in Hilbert space and continuous spontaneous localization of systems of identical particles
TL;DR: Stochastic differential equations describing the Markovian evolution of state vectors in the quantum Hilbert space are studied as possible expressions of a universal dynamical principle and the stochastic evolution is proved to induce continuous dynamical reduction of the state vector onto mutually orthogonal subspaces.
1.2K
A general argument against superluminal transmission through the quantum mechanical measurement process
TL;DR: In this paper, it was shown that no super-luminance of signals can be assumed to be the result of the collapse of the wave funct ion, which is a consequence of the s t a n d a r d q u a n t u m thco ry of measm'ement.
383
Continuous-spontaneous-reduction model involving gravity
TL;DR: In this paper, a modification of Di\`osi's model is proposed, which overcomes the difficulties and retains partially its appealing features, allowing the derivation from microdynamics of wave-packet reduction, and accounts for the emergence of definite macroscopic properties for macroobjects.
326
Old and New Ideas in the Theory of Quantum Measurement
GianCarlo Ghirardi,Alberto Rimini +1 more
- 01 Jan 1990
TL;DR: The conceptually simplest interpretation of the quantum-mechanical wave function is that adopted by most textbooks as discussed by the authors, which is the one adopted by Dirac1 and Messiah2.
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