arXiv · 1707.09884
Spatial Kibble-Zurek mechanism through susceptibilities: the inhomogeneous quantum Ising model case
Abstract
We study the quantum Ising model in the transverse inhomogeneous magnetic field. Such a system can be approached numerically through exact diagonalization and analytically through the renormalization group techniques. Basic insights into its physics, however, can be obtained by adopting the Kibble-Zurek theory of non-equilibrium phase transitions to description of spatially inhomogeneous systems at equilibrium. We employ all these approaches and focus on derivatives of longitudinal and transverse magnetizations, which have extrema near the critical point. We discuss how these extrema can be used for locating the critical point and for verification of the Kibble-Zurek scaling predictions in the spatial quench.
Explore related subjects
Keep this discovery
Mateusz Łącki, Bogdan Damski. 2017-07-31. Spatial Kibble-Zurek mechanism through susceptibilities: the inhomogeneous quantum Ising model case. https://doi.org/10.1088/1742-5468/aa8c20
Cite the original work for its findings. Save a collection to share your selection of sources.