Events4th International Electronic Conference on Entropy and Its Applications
Published
This submission belongs to the session a. Statistical Physics of the event 4th International Electronic Conference on Entropy and Its Applications
Published date
20 Nov, 2017
Citation
Koichi Nakagawa, Zeeman effects on the entanglement of non-equilibrium finite-spin systems, in Proceedings of 4th International Electronic Conference on Entropy and Its Applications, 21 November–1 December 2017, MDPI: Basel, Switzerland, doi: 10.3390/ecea-4-05003
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Zeeman effects on the entanglement of non-equilibrium finite-spin systems

1. Hoshi University, Japan
Abstract

We study the Zeeman effect on entanglement of non-equilibrium finite-spin systems with external fields using a method based on thermofield dynamics (TFD). For this purpose, the extended density matrices and extended entanglement entropies of two systems with either non-competing or competing external fields are calculated according to the dissipative von Neumann equation, and the numerical results are compared. Consequently, through the ``twin-peaks'' oscillations of the quantum entanglement, we have illustrated the Zeeman effect on the entanglement of non-equilibrium finite-spin systems with competing external fields in the TFD algorithm.

Keywords
Entanglement entropy
Thermofield dynamics
Extended density matrix
Equilibrium and non-equilibrium finite-spin systems
Dissipative von Neumann equation
Zeeman effect
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