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The Kibble Zurek Mechanism of Topological Defect Formation in Quantum Field Theory with Matrix Product States

Published 28 Nov 2017 in quant-ph and hep-lat | (1711.10452v3)

Abstract: The Kibble Zurek mechanism in a relativistic ϕ<sup>4\phi<sup>{4} scalar field theory in D=(1+1)D = (1 + 1) is studied using uniform matrix product states. The equal time two point function in momentum space G2(k)G_{2}(k) is approximated as the system is driven through a quantum phase transition at a variety of different quench rates τQ\tau_{Q}. We focus on looking for signatures of topological defect formation in the system and demonstrate the consistency of the picture that the two point function G2(k)G_{2}(k) displays two characteristic scales, the defect density nn and the kink width dKd_{K}. Consequently, G2(k)G_{2}(k) provides a clear signature for the formation of defects and a well defined measure of the defect density in the system. These results provide a benchmark for the use of tensor networks as powerful non-perturbative non-equilibrium methods for relativistic quantum field theory, providing a promising technique for the future study of high energy physics and cosmology.

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