Fock-state filtering of squeezed states: enhanced nonclassicality and effects of a thermal bath
arXiv:2608.22668
Abstract
The ability to tailor photon-number statistics is central to the generation and control of nonclassical states of light. Here, we investigate how Fock-state filtering of squeezed coherent states can be used to engineer their photon statistics. We consider the selective removal of the and Fock components and show that this process can enhance the sub-Poissonian character of the field, depending on the coherent amplitude. We then analyze the evolution of these engineered states in a thermal environment. Although all states eventually relax toward thermal statistics, the signatures of the filtering process may persist over a significant part of the evolution, while the purity of the filtered states is rapidly degraded by incoherent population redistribution. Our results illustrate both the potential and the limitations of photon-number engineering in realistic, dissipative settings.
Accepted for publication in the Brazilian Journal of Physics Collection in honor of Prof. Amir O. Caldeira, "Frontiers in Quantum Mechanics and the 45 Years of the Caldeira-Leggett Model"