Decoherent Histories Approach to the Arrival Time Problem
arXiv:quant-ph/9706045 · doi:10.1103/PhysRevD.57.3351
Abstract
We use the decoherent histories approach to quantum theory to compute the probability of a non-relativistic particle crossing during an interval of time. For a system consisting of a single non-relativistic particle, histories coarse-grained according to whether or not they pass through spacetime regions are generally not decoherent, except for very special initial states, and thus probabilities cannot be assigned. Decoherence may, however, be achieved by coupling the particle to an environment consisting of a set of harmonic oscillators in a thermal bath. Probabilities for spacetime coarse grainings are thus calculated by considering restricted density operator propagators of the quantum Brownian motion model. We also show how to achieve decoherence by replicating the system times and then projecting onto the number density of particles that cross during a given time interval, and this gives an alternative expression for the crossing probability. The latter approach shows that the relative frequency for histories is approximately decoherent for sufficiently large , a result related to the Finkelstein-Graham-Hartle theorem.
42 pages, plain Tex
Cited by in corpus (26)
- A classical channel model for gravitational decoherence
- Pauli's Theorem and Quantum Canonical Pairs: The Consistency Of a Bounded, Self-Adjoint Time Operator Canonically Conjugate to a Hamiltonian with Non-empty Point Spectrum
- Probabilities in Quantum Cosmological Models: A Decoherent Histories Analysis Using a Complex Potential
- Time-of-arrival probabilities and quantum measurements
- Arrival Times, Complex Potentials and Decoherent Histories
- Life in an Energy Eigenstate: Decoherent Histories Analysis of a Model Timeless Universe
- Trajectories for the Wave Function of the Universe from a Simple Detector Model
- Time-of-arrival probabilities for general particle detectors
- Decoherent histories analysis of the relativistic particle
- Quantum probability distribution of arrival times and probability current density
- Invariant Class Operators in the Decoherent Histories Analysis of Timeless Quantum Theories
- Decoherent Histories Analysis of Minisuperspace Quantum Cosmology
- Quantum Backflow States from Eigenstates of the Regularized Current Operator
- Time of arrival and localization of relativistic particles
- Quantum Arrival Time Formula from Decoherent Histories
- Ambiguities of arrival-time distributions in quantum theory
- Spin dependent observable effect for free particles using the arrival time distribution
- Pitfalls of Path Integrals: Amplitudes for Spacetime Regions and the Quantum Zeno Effect
- Quantum Arrival Time For Open Systems
- Spacetime Coarse Grainings in the Decoherent Histories Approach to Quantum Theory
- Time in Quantum Mechanics and Quantum Field Theory
- Quantum Zeno Effect in the Decoherent Histories
- Decoherent Histories of Spin Networks
- Amplitudes for Spacetime Regions and the Quantum Zeno Effect: Pitfalls of Standard Path Integral Constructions
- A review of the decoherent histories approach to the arrival time problem in quantum theory
- Contrary Inferences for Classical Histories within the Consistent Histories Formulation of Quantum Theory