Nonclassical properties and Anderson localization of quantum states in
coupled waveguides
- URL: http://arxiv.org/abs/2108.04844v1
- Date: Tue, 10 Aug 2021 18:02:28 GMT
- Title: Nonclassical properties and Anderson localization of quantum states in
coupled waveguides
- Authors: Thais L. Silva, Wesley B. Cardoso, Ardiley T. Avelar and Jorge M. C.
Malbouisson
- Abstract summary: We consider the propagation of light beams through disordered lattices of coupled waveguides.
We assume that the beam is initially in the coherent state, the binomial state, and the reciprocal state.
We find that high values of the disorder tend to preserve quantum properties of some input states when we look at the input waveguide despite the coupling between it and the neighboring waveguides.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We consider the propagation of light beams through disordered lattices of
coupled waveguides searching for Anderson localization and investigating the
evolution of nonclassical properties of injected quantum states. We assume that
the beam is initially in a variety of states, such as the complementary
coherent state, the reciprocal binomial state, and the polynomial state. The
statistical properties of the evolved states were analyzed numerically as
functions of the localization/delocalization parameters averaged over many
realizations of disorder. We also numerically reconstruct the Wigner function
of the output state. Interestingly, we find that high values of the disorder
tend to preserve quantum properties of some input states when we look at the
input waveguide despite the coupling between it and the neighboring waveguides.
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