Quantum Entanglement and Decoherence: Beyond Particle Models. A Farewell to Quantum Mechanics's Weirdness
arXiv:1404.0552
Abstract
Combining abstract to laboratory projected quantum states a general analysis of headline quantum phenomena is presented. Standard representation mode is replaced; instead quantum states sustained by elementary material constituents occupy its place. Renouncing to assign leading roles to language originated in classical physics when describing genuine quantum processes, together with sustainment concept most, if not all weirdness associated to Quantum Mechanics vanishes.
6 pages, no figures. arXiv admin note: text overlap with arXiv:1402.6522
References in corpus (1)
Cited by in corpus (4)
- Quantum Physics From Abstract to Laboratory Space I. Q-States Sustained by Partite Material Systems: Linking A+B and AxB domains via Entanglement
- q-Measurement Scheme set in Quantum Photonic Frameworks: Linking Abstract Space and Lab Spaces
- Photonic Framework to Handle Physical and Chemical Processes: Quantum Entanglement, Coherence, De-coherence, Re-coherence and the Roles of Multipartite Base States
- Quantum Matter-Photonics Framework: Analyses of Chemical Conversion Processes