Efeito Casimir Dinâmico e detecção de fótons: aspectos algébricos e dinâmicos
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Universidade Estadual de Ponta Grossa
Abstract
In this work, the quantization of the electromagnetic field is discussed in the context of
the second quantization for a one-dimensional cavity for both fixed and movable walls.
The structure of quantum states of the electromagnetic field is analyzed, considering
properties such as zero-point energy (or vacuum energy) and quadrature components. One
of the main points is the presentation of a hamiltonian formulation of the Dynamical
Casimir Effect, which is a direct consequence of the existence of vacuum energy. The
generation and detection (by means of a quantized RLC circuit, or antenna) of photons
in the Dynamical Casimir Effect are discussed, as well as the dissipation effect due to
the coupling of the antenna with a thermal reservoir. The approach of this last analysis
is carried out through the Master Equation and the temporal evolution in the context
of Gaussian states. The solutions of the covariance matrices for the system composed of
a cavity mode with movable walls and a dissipative detector were obtained, considering
squeezed thermal states as initial Gaussian states.
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ROCHA, Jonathan Alexandre Moraz Almeida. Efeito Casimir Dinâmico e detecção de fótons: aspectos algébricos e dinâmicos. 2023. Dissertação (Mestrado em Ciências) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2023.
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