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Journal ArticleDOI

Dynamics of decoherence without dissipation in a squeezed thermal bath

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TLDR
In this article, a generic open quantum system where the coupling between the system and its environment is of an energy-preserving quantum nondemolition (QND) type is studied.
Abstract
We study a generic open quantum system where the coupling between the system and its environment is of an energy-preserving quantum nondemolition (QND) type. We obtain the general master equation for the evolution of such a system under the influence of a squeezed thermal bath of harmonic oscillators. From the master equation it can be seen explicitly that the process involves decoherence or dephasing without any dissipation of energy. We work out the decoherence-causing term in the high- and zero-temperature limits and check that they match with known results for the case of a thermal bath. The decay of the coherence is quantified as well by the dynamics of the linear entropy of the system under various environmental conditions. We make a comparison of the quantum statistical properties between QND and dissipative types of evolution using a two-level atomic system and a harmonic oscillator.

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Citations
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Journal ArticleDOI

Controlled bidirectional remote state preparation in noisy environment: a generalized view

TL;DR: It is shown that a realistic controlled bidirectional remote state preparation is possible using a large class of entangled quantum states having a particular structure.
Journal ArticleDOI

A comparative study of protocols for secure quantum communication under noisy environment: single-qubit-based protocols versus entangled-state-based protocols

TL;DR: In this article, the effect of noise on various protocols of secure quantum communication has been studied and two protocols based on single-qubit states and two based on entangled states were compared.
Journal ArticleDOI

Quasiprobability distributions in open quantum systems: Spin-qubit systems

TL;DR: In this paper, the authors provide a comprehensive analysis of quasiprobability distributions for spin-qubit systems under general open system effects, including both pure dephasing as well as dissipation.
Journal ArticleDOI

Dynamics of entanglement in two-qubit open system interacting with a squeezed thermal bath via dissipative interaction

TL;DR: In this article, the dynamics of entanglement in a two-qubit system interacting with a squeezed thermal bath via a dissipative system-reservoir interaction with the system and reservoir assumed to be in a separable initial state was studied by making use of concurrence as well as a recently introduced measure of mixed state entenglement via a probability density function.
Journal ArticleDOI

Dissipative and non-dissipative single-qubit channels: dynamics and geometry

TL;DR: Single-qubit dissipative and non-dissipative channels, set in the general scenario of a system’s interaction with a squeezed thermal bath, are compared in the Choi isomorphism framework, to bring out their contrasting rank and geometric properties.
References
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Journal ArticleDOI

Gauged Q balls

TL;DR: Classical nontopological soliton configurations are considered within the theory of a complex scalar field with a gauged U(1) symmetry and their existence and stability against dispersion are demonstrated and their properties are investigated analytically and numerically.
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The Wave—Particle Duality

TL;DR: Some experiments seem to imply that an electron can simultaneously occupy different regions of space; others again that it can be localized in a single tiny region; and the same is true for photons, protons, neutrons, mesons, etc as mentioned in this paper.
Journal ArticleDOI

Quantum Brownian motion in a bath of parametric oscillators: A model for system-field interactions.

TL;DR: The origin of quantum noise and thermal radiance from black holes and from uniformly accelerated observers in Minkowski space as well as from the de Sitter universe discovered by Hawking, Unruh, and Gibbons and Hawking are discussed.
Journal ArticleDOI

Adiabatic Decoherence

TL;DR: In this article, a general quantum system interacting with environment modeled by the bosonic heat bath of the Caldeira and Leggett type was considered, and the decoherence process was controlled by spectral properties of the interaction rather than system's Hamiltonian.
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