A "Garden of Forking Paths" - the Quantum Mechanics of Histories of Events
arXiv:1603.09664 · doi:10.1016/j.nuclphysb.2016.04.010
Abstract
We present a short survey of a novel approach, called "ETH approach", to the quantum theory of events happening in isolated physical systems and to the effective time evolution of states of systems featuring events. In particular, we attempt to present a clear explanation of what is meant by an "event" in quantum mechanics and of the significance of this notion. We then outline a theory of direct (projective) and indirect observations or recordings of physical quantities and events. Some key ideas underlying our general theory are illustrated by studying a simple quantum-mechanical model of a mesoscopic system.
26 pages, 3 figures
References in corpus (2)
Cited by in corpus (14)
- On entropy production of repeated quantum measurements I. General theory
- Relativistic Quantum Theory
- Causal Fermion Systems and the ETH Approach to Quantum Theory
- Indirect Measurements of a Harmonic Oscillator
- Quantum Mechanics With Noncommutative Amplitudes
- The Time-Evolution of States in Quantum Mechanics
- Quantum Non-Locality and the CMB: what Experiments say
- Indirect acquisition of information in quantum mechanics: states associated with tail events
- On the nature of the Born rule
- We just cannot have classical and quantum behavior at the same TIME
- Diagnosing the Trouble With Quantum Mechanics
- Quantum Mechanics: Statistical Balance Prompts Caution in Assessing Conceptual Implications
- Review of Jean Bricmont's book "Making Sense of Quantum Mechanics"
- Tamed Feynman-Kac diffusion processes: Killing-branching intertwine