2019/06/30 by Matteo Carlesso, Mauro Paternostro · 3 citations
Earth and Planetary Sciences · Engineering · Physics and Astronomy · #Earthquake Detection and Analysis #Measure (data warehouse) #Measurement problem #Quantum #Quantum Mechanics and Applications #Scale (ratio) #Structural Response to Dynamic Loads #Test (biology) #physics.hist-ph #quant-ph
paper · pdf · doi:10.1007/978-3-030-46777-7_16
published in Fundamental theories of physics, 205-215 (Springer International Publishing) · Submitted as a chapter of "Do wave functions jump? Perspectives on the work of GC Ghirardi", Editors: V. Allori, A. Bassi, D. Dürr & N. Zanghì; Springer International Publishing
arxiv created 2019/07/11 · openalex created_date 2019/07/12 · openalex publication_date 2020/10/02 · arxiv updated 2021/04/14 · openalex updated_date 2026/08/05
The gap between the predictions of collapse models and those of standard quantum mechanics widens with the complexity of the involved systems. Addressing the way such gap scales with the mass or size of the system being investigated paves the way to testing the validity of the collapse theory and identify the values of the parameters that characterize it. Here, we review the recently proposed non-interferometric approach to the testing of collapse models, focusing on the opto-mechanical platform.