Can a photon be separated from its wave?
arXiv:1703.02617 · doi:10.4236/jmp.2018.93032
Abstract
An experiment is proposed in which the overall path taken by a photon is indicated by the timing of a twin herald photon, while a particular segment of that path is determined by interference. The experiment is to be carried out in two parts. In the first, coincident pairs of photons generated by type I spontaneous- parametric-down-conversion are diffracted by a large-width grating to increase the coherence length of their associated waves, and to produce two sources of coincident photons. Upon experimental confirmation that coincidences have been maintained, one of the sources is used to furnish timing heralds, and the other to send photons to an unequal path interferometer. A photon path through the interferometer via the short arm is indicated by count synchronization with the herald. The exit output port used and final detection location are determined by the phase in the long arm. If output port usage can thus be controlled by the phase in the photon free arm, the path of the photon as particle will have been controlled by interference with an accompanying photon-empty wave.
11 pages, 2 figures. 4 references added. Clarifying material added in Sec. III
References in corpus (6)
- Experimental realization of Wheeler's delayed-choice GedankenExperiment
- Paradox in Wave-Particle Duality
- Violation of the principle of Complementarity, and its implications
- Observation of the quantum paradox of separation of a single photon from one of its properties
- Quantum diffraction and interference of spatially correlated photon pairs and its Fourier-optical analysis
- Afshar's Experiment does not show a Violation of Complementarity