Weak Measurement and Two-State-Vector Formalism: Deficit of Momentum Transfer in Scattering Processes
arXiv:1611.00272 · doi:10.12743/quanta.v5i1.48
Abstract
The notions of weak measurement, weak value, and two-state-vector formalism provide a new quantum-theoretical frame for extracting additional information from a system in the limit of small disturbances to its state. Here, we provide an application to the case of two-body scattering with one body weakly interacting with an environment. The direct connection to real scattering experiments is pointed out by making contact with the field of impulsive incoherent neutron scattering from molecules and condensed systems. In particular, we predict a new quantum effect in neutron-atom collisions, namely an observable momentum transfer deficit; or equivalently, a reduction of effective mass below that of the free scattering atom. Two corroborative experimental findings are shortly presented. Implications for current and further experiments are mentioned. An interpretation of this effect and the associated experimental results within conventional theory is currently unavailable.
24 pages, 4 figures
References in corpus (9)
- Combined Measurement of the Higgs Boson Mass in Collisions at and 8 TeV with the ATLAS and CMS Experiments
- Ultrasensitive Beam Deflection Measurement via Interferometric Weak Value Amplification
- Weak Values are Interference Phenomena
- Weak measurement: Effect of the detector dynamics
- Observation of a classical cheshire cat in an optical interferometer
- Comment on "How the result of a single coin toss can turn out to be 100 heads"
- The Complete Quantum Cheshire Cat
- Conditions for Anomalous Weak Value
- A Note Concerning von Neumann Projector Measurement Pointer States, Weak Values, and Interference