Bloch oscillations and the lack of the decay of the false vacuum in a one-dimensional quantum spin chain

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Abstract

We consider the decay of the false vacuum, realised within a quantum quench into an anti-confining regime of the Ising spin chain with a magnetic field opposite to the initial magnetisation. Although the effective linear potential between the domain walls is repulsive, the time evolution of correlations still shows a suppression of the light cone and a reduction of vacuum decay via suppression of the growth of nucleated bubbles. The suppression of the bubble growth is a lattice effect, and can be assigned to emergent Bloch oscillations.

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Pomponio, O., Werner, M. A., Zaránd, G., & Takács, G. (2022). Bloch oscillations and the lack of the decay of the false vacuum in a one-dimensional quantum spin chain. SciPost Physics, 12(2). https://doi.org/10.21468/SCIPOSTPHYS.12.2.061

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