The Schrödinger equation is solved for many free particles and their quantum entanglement is studied via correlation analysis. Converting the Schrödinger equation in the Madelung hydrodynamic-like form, the quantum mechanics is extended to open quantum systems by adding Ohmic friction forces. The dissipative evolution confirms correlation decay over time, but a new integral of motion is discovered, being appropriate for storing everlasting quantum information.https://www.researchgate.net/publication/35250598
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Physical systems made of many interacting quantum particles can often be described by Euler hydrodyn...
Similarity of equations of motion for the classical and quantum trajectories is used to introduce af...
The coupled quantum harmonic oscillator is one of the most researched and important model systems in...
In this paper, a quantum system is considered to be formed by two free particles in such a manner th...
In 1935, Schrödinger introduced the word "entanglement" to describe a situation examined in the famo...
With Feynman's path- integral method we can obtain the quantum mechanics of a quantum system like a ...
In (1), a free quantum particle is analyzed from a frame moving such that t1=t (time) and x1=x-X(t)....
A powerful perspective in understanding nonequilibrium quantum dynamics is through the time evolutio...
We provide a historical perspective of how the notion of correlations has evolved within quantum phy...
iAcknowledgements I, firstly, would like to thank the National Council for Scientific and Technologi...
In this work, our prime objective is to study non-locality and long range effect of two body correla...
Abstract. 75 years after the term "entanglement " was coined to a peculiar feature inheren...
Correlations between different regions of a quantum many-body system can be quantified through measu...
In this bachelor thesis, the paper ”Classical synchronization indicates persistent entanglement in i...
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Physical systems made of many interacting quantum particles can often be described by Euler hydrodyn...
Similarity of equations of motion for the classical and quantum trajectories is used to introduce af...
The coupled quantum harmonic oscillator is one of the most researched and important model systems in...
In this paper, a quantum system is considered to be formed by two free particles in such a manner th...
In 1935, Schrödinger introduced the word "entanglement" to describe a situation examined in the famo...
With Feynman's path- integral method we can obtain the quantum mechanics of a quantum system like a ...
In (1), a free quantum particle is analyzed from a frame moving such that t1=t (time) and x1=x-X(t)....
A powerful perspective in understanding nonequilibrium quantum dynamics is through the time evolutio...
We provide a historical perspective of how the notion of correlations has evolved within quantum phy...
iAcknowledgements I, firstly, would like to thank the National Council for Scientific and Technologi...
In this work, our prime objective is to study non-locality and long range effect of two body correla...
Abstract. 75 years after the term "entanglement " was coined to a peculiar feature inheren...
Correlations between different regions of a quantum many-body system can be quantified through measu...
In this bachelor thesis, the paper ”Classical synchronization indicates persistent entanglement in i...
Quantum information science is a rapidly growing research area for that it provides new insights to ...
Physical systems made of many interacting quantum particles can often be described by Euler hydrodyn...
Similarity of equations of motion for the classical and quantum trajectories is used to introduce af...