Coherently controlled quantum features in a coupled interferometric
scheme
- URL: http://arxiv.org/abs/2102.09189v1
- Date: Thu, 18 Feb 2021 07:10:32 GMT
- Title: Coherently controlled quantum features in a coupled interferometric
scheme
- Authors: B. S. Ham
- Abstract summary: In an interferometric scheme, anticorrelation results from photon bunching based on randomness when entangled photon pairs impinge on a beam splitter.
In this paper, the origin of quantum features in a coupled interferometric scheme is investigated using pure coherence optics.
A deterministic method of entangled photon-pair generation is proposed for on-demand coherence control of quantum processing.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: Over the last several decades, entangled photon pairs generated by
spontaneous parametric down conversion processes in both second-order and
third-order nonlinear optical materials have been intensively studied for
various quantum features such as Bell inequality violation and anticorrelation.
In an interferometric scheme, anticorrelation results from photon bunching
based on randomness when entangled photon pairs coincidently impinge on a beam
splitter. Compared with post-measurement-based probabilistic confirmation, a
coherence version has been recently proposed using the wave nature of photons.
Here, the origin of quantum features in a coupled interferometric scheme is
investigated using pure coherence optics. In addition, a deterministic method
of entangled photon-pair generation is proposed for on-demand coherence control
of quantum processing.
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