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- W3046021938 abstract "The Kibble-Zurek mechanism describes the saturation of critical scaling upon dynamically approaching a phase transition. This is a consequence of the breaking of adiabaticity due to the scale set by the slow drive. By driving the gap parameter, this can be used to determine the leading critical exponents. But this is just the `tip of the iceberg': Driving more general couplings allows one to activate the entire universal spectrum of critical exponents. Here we establish this phenomenon and its observable phenomenology for the quantum phase transitions in an analytically solvable minimal model and the experimentally relevant transverse XY model. The excitation density is shown to host the sequence of exponents including the subleading ones in the asymptotic scaling behavior by a proper design of the geometry of the driving protocol in the phase diagram. The case of a parallel drive relative to the phase boundary can still lead to the breaking of adiabaticity, and exposes the subleading exponents in the clearest way. Complementarily to disclosing universal information, we extract the restrictions due to the non-universal content of the models onto the extent of the subleading scalings regimes." @default.
- W3046021938 created "2020-08-03" @default.
- W3046021938 creator A5031042601 @default.
- W3046021938 creator A5045695010 @default.
- W3046021938 creator A5054822411 @default.
- W3046021938 date "2020-09-23" @default.
- W3046021938 modified "2023-09-26" @default.
- W3046021938 title "Kibble-Zurek mechanism from different angles: The transverse XY model and subleading scalings" @default.
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- W3046021938 doi "https://doi.org/10.1103/physrevb.102.104306" @default.