12 citations · 22 across the 11 of their papers we have counts for
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The role of chaotic and ordered trajectories in establishing Born's rule
Athanasios C. Tzemos, George Contopoulos
We study in detail the trajectories, ordered and chaotic, of two entangled Bohmian qubits when their initial preparation satisfies (or not) Born's rule for various amounts of quant…
Chaos in Bohmian Quantum Mechanics: A short review
George Contopoulos, Athanasios C. Tzemos
This is a short review in the theory of chaos in Bohmian Quantum Mechanics based on our series of works in this field. Our first result is the development of a generic theoretical…
Chaos and ergodicity in an entangled two-qubit Bohmian system
Athanasios C. Tzemos, George Contopoulos
We study in detail the onset of chaos and the probability measures formed by individual Bohmian trajectories in entangled states of two-qubit systems for various degrees of entangl…
Bohmian trajectories in an entangled two-qubit system
Athanasios Tzemos, George Contopoulos, Christos Efthymiopoulos
In this paper we examine the evolution of Bohmian trajectories in the presence of quantum entanglement. We study a simple two-qubit system composed of two coherent states and inves…
Origin of chaos near three-dimensional quantum vortices: A general Bohmian theory
Athanasios C. Tzemos, Christos Efthymiopoulos, George Contopoulos
We provide a general theory for the structure of the quantum flow near 3-d nodal lines, i.e. one-dimensional loci where the 3-d wavefunction becomes equal to zero. In suitably defi…
Chaos in de Broglie - Bohm quantum mechanics and the dynamics of quantum relaxation
Christos Efthymiopoulos, George Contopoulos, Athanasios C. Tzemos
We discuss the main mechanisms generating chaotic behavior of the quantum trajectories in the de Broglie - Bohm picture of quantum mechanics, in systems of two and three degrees of…