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Creation and dynamics of remote spin-entangled pairs in the expansion of strongly correlated fermions in an optical lattice
Journal article   Peer reviewed

Creation and dynamics of remote spin-entangled pairs in the expansion of strongly correlated fermions in an optical lattice

Stefan Kessler, Ian P. McCulloch and Florian Marquardt
New journal of physics, Vol.15(5), pp.053043/1-053043/24
29/05/2013

Abstract

Physical Sciences Physics Physics, Multidisciplinary Science & Technology
We consider the nonequilibrium dynamics of an interacting spin-1/2 fermion gas in a one-dimensional optical lattice after switching off the confining potential. In particular, we study the creation and the time evolution of spatially separated, spin-entangled fermionic pairs. The time-dependent density-matrix renormalization group is used to simulate the time evolution and evaluate the two-site spin correlation functions, from which the concurrence is calculated. We find that the typical distance between entangled fermions depends crucially on the onsite interaction strength, and that a time-dependent modulation of the tunnelling amplitude can enhance the production of spin entanglement. Moreover, we discuss the prospects of experimentally observing these phenomena using spin-dependent single-site detection.
url
https://doi.org/10.1088/1367-2630/15/5/053043View
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