Non-classical paths in interference experiments
arXiv:1308.2022 · doi:10.1103/PhysRevLett.113.120406
Abstract
In a double slit interference experiment, the wave function at the screen with both slits open is not exactly equal to the sum of the wave functions with the slits individually open one at a time. The three scenarios represent three different boundary conditions and as such, the superposition principle should not be applicable. However, most well known text books in quantum mechanics implicitly and/or explicitly use this assumption which is only approximately true. In our present study, we have used the Feynman path integral formalism to quantify contributions from non-classical paths in quantum interference experiments which provide a measurable deviation from a naive application of the superposition principle. A direct experimental demonstration for the existence of these non-classical paths is hard. We find that contributions from such paths can be significant and we propose simple three-slit interference experiments to directly confirm their existence.
v2: 5 pages + 3 pages supplementary, title changed, version to appear in Physical Review Letters
References in corpus (3)
Cited by in corpus (43)
- Exotic Looped Trajectories of Photons in Three-Slit Interference
- On the superposition principle in interference experiments
- Obtaining tight bounds on higher-order interferences with a 5-path interferometer
- Sensitive single-photon test of extended quantum theory with 2D hexagonal boron nitride
- Testing higher-order quantum interference with many-particle states
- Experimental Test of Born's Rule by Inspecting Third-Order Quantum Interference on a Single Spin in Solids
- Interference enhanced thermoelectricity in quinoid type structures
- Three-Slit Interference: A Duality Relation
- Many-particle interference to test Born's rule
- Which-way double slit experiments and Born rule violation
- Gouy phase in non-classical paths in triple-slit interference experiment
- Triple Interference, Non-linear Talbot Effect and Gravitization of the Quantum
- Timelessness strictly inside the Quantum Realm
- Measurement of the Photon-Plasmon Coupling Phase
- User's guide to Monte Carlo methods for evaluating path integrals
- On detection statistics in double-double-slit experiment
- Spatially correlated photonic qutrit pairs using pump beam modulation technique
- The New SI and the Fundamental Constants of Nature
- Testing quantum theory by generalizing noncontextuality
- Probability density of relativistic spinless particles
- Time dispersion and quantum mechanics
- How to Measure the Quantum Measure
- Control of particle propagation beyond the uncertainty limit by interference between position and momentum
- Higher-order interference between multiple quantum particles interacting nonlinearly
- Neutrino Oscillations at JUNO, the Born Rule, and Sorkin's Triple Path Interference
- Theory of Quantum Path Computing with Fourier Optics and Future Applications for Quantum Supremacy, Neural Networks and Nonlinear Schrödinger Equations
- Exotic looped trajectories via quantum marking
- An atomic test of higher-order interference
- Quantum Path Computing: Computing Architecture with Propagation Paths in Multiple Plane Diffraction of Classical Sources of Fermion and Boson Particles
- Huygens triviality of the time-independent Schrödinger equation. Applications to atomic and high energy physics
- Wave-particle duality and the objectiveness of "true" and "false"
- Three-Slit Ghost Interference and Nonlocal Duality
- How to put quantum particles on magic bullet trajectories that can hit two targets without a clear line-of-sight
- Experimental triple-slit interference in a strongly-driven V-type artificial atom
- Interference in Quantum Mechanics
- Significant nonclassical paths with atoms and cavities in the double-slit experiment
- Diffraction-Based Interaction-Free Measurements
- Sorkin parameter for type-I spontaneous parametric down-conversion biphotons and matter waves
- The cognitive triple-slit experiment
- Theory of Quantum Path Entanglement and Interference with Multiplane Diffraction of Classical Light Sources
- Quantum computers to test fundamental physics or viceversa
- Interference effects and modified Born rule in the presence of torsion
- Controlling and measuring a superposition of position and momentum