Collapse Models: a theoretical, experimental and philosophical review
arXiv:2310.14969 · doi:10.3390/e25040645
Abstract
n this paper, we review and connect the three essential conditions needed by the collapse model to achieve a complete and exact formulation, namely the theoretical, the experimental, and the ontological ones. These features correspond to the three parts of the paper. In any empirical science, the first two features are obviously connected but, as is well known, among the different formulations and interpretations of non-relativistic quantum mechanics, only collapse models, as the paper well illustrates with a richness of details, have experimental consequences. Finally, we show that a clarification of the ontological intimations of collapse models is needed for at least three reasons: (1) to respond to the indispensable task of answering the question `what are collapse models (and in general any physical theory) about?'; (2) to achieve a deeper understanding of their different formulations; (3) to enlarge the panorama of possible readings of a theory, which historically has often played a fundamental heuristic role.
21 pages, LaTeX
References in corpus (37)
- Cavity Optomechanics
- Decoherence, einselection, and the quantum origins of the classical
- Models of Wave-function Collapse, Underlying Theories, and Experimental Tests
- Dynamical Reduction Models
- Motional Quantum Ground State of a Levitated Nanoparticle from Room Temperature
- Cavity optomechanics using an optically levitated nanosphere
- Large Quantum Superpositions and Interference of Massive Nanometer-Sized Objects
- Toward Quantum Superposition of Living Organisms
- Levitodynamics: Levitation and control of microscopic objects in vacuum
- Real-time optimal quantum control of mechanical motion at room temperature
- Colloquium: Quantum interference of clusters and molecules
- Decoherence of matter waves by thermal emission of radiation
- Quantum control of a nanoparticle optically levitated in cryogenic free space
- A Relativistic Version of the Ghirardi-Rimini-Weber Model
- The General Quantum Interference Principle and the Duality Computer
- Lower and Upper Bounds on CSL Parameters from Latent Image Formation and IGM Heating
- Macroscopicity of Mechanical Quantum Superposition States
- Relativistic state reduction dynamics
- Cavity cooling of an optically trapped nanoparticle
- Underground test of gravity-related wave function collapse
- Probing gravity by holding atoms for 20 seconds
- Present status and future challenges of non-interferometric tests of collapse models
- Realization of a complete Stern-Gerlach interferometer: Towards a test of quantum gravity
- A universal matter-wave interferometer with optical ionization gratings in the time domain
- Parameter Diagrams of the GRW and CSL Theories of Wave Function Collapse
- Coherent Inflation for Large Quantum Superpositions of Microspheres
- Testing the foundations of quantum physics in space Interferometric and non-interferometric tests with Large Particles
- Quantum experiments with microscale particles
- Spontaneous photon-emission from a non-relativistic free charged particle in collapse models: A case-study
- On the spontaneous emission of electromagnetic radiation in the CSL model
- On the Electromagnetic Properties of Matter in Collapse Models
- Talbot--Lau effect beyond the point-particle approximation
- Testing the quantum superposition principle in the frequency domain
- The emission of electromagnetic radiation from a quantum system interacting with an external noise: A general result
- A density tensor hierarchy for open system dynamics: retrieving the noise
- Matter-wave physics with nanoparticles and biomolecules
- MAQRO -- BPS 2023 Research Campaign Whitepaper
Cited by in corpus (11)
- General quantum-classical dynamics as measurement based feedback
- The classical-quantum hybrid canonical dynamics and its difficulties with special and general relativity
- The Role of Quantum Measurements when Testing the Quantum Nature of Gravity
- The Quantum Measurement Problem: A Review of Recent Trends
- A proposal for a new kind of spontaneous collapse model
- Spontaneous localisation from a coarse-grained deterministic and non-unitary dynamics
- Hybrid Classical-Quantum Newtonian Gravity with stable vacuum
- Exploring the Effects of Mass Dependence in Spontaneous Collapse Models
- Gravity-mediated decoherence
- Information versus Physicality: On the Nature of the Wavefunctions of Quantum Mechanics
- Diffusion Minimization via Optimal Smearing in Collapse and Hybrid Classical-Quantum Gravitational Models