We compare two different notions of dynamical phase transitions in closed quantum systems. The first is identified through the time-averaged value of the equilibrium-order parameter, whereas the second corresponds to non-analyticities in the time behaviour of the Loschmidt echo. By exactly solving the dynamics of the infinite-range XY model, we show that in this model non-analyticities of the Loschmidt echo are not connected to standard dynamical phase transitions and are not robust against quantum fluctuations. Furthermore, we show that the existence of either of the two dynamical transitions is not necessarily connected to the equilibrium quantum phase transition. © 2016 The Author(s) Published by the Royal Society. All rights reserved
We explore the dynamics of long-range Kitaev chain by varying pairing interaction exponent. It is we...
We study finite-temperature dynamical quantum phase transitions (DQPTs) by means of the fidelity and...
The development of ultracold atom physics enables people to study fundamental questions in quantum m...
We compare two different notions of dynamical phase transitions in closed quantum systems. The first...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in noninter...
The Loschmidt echo is a purely quantum-mechanical quantity whose determination for large quantum man...
Dynamical quantum phase transitions (DQPTs) are criticalities in the time evolution of quantum syste...
Recently, dynamical phase transitions have been identified based on the nonanalytic behavior of the ...
We report a dynamical quantum phase transition portrait in the alternating field transverse XY spin ...
| openaire: EC/H2020/892956/EU//QuLeeYangDynamical phase transitions extend the notion of criticalit...
We study the dynamical fidelity $\mathcal{F}(t)$ and the Loschmidt echo $\mathcal{L}(t)$ , followin...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in non-inte...
We unveil the role of the long time average of Loschmidt echo in the characterization of nonequilibr...
A local excitation in a quantum many-particle system evolves deterministically. A time-reversal proc...
Interacting many-body systems that are driven far away from equilibrium can exhibit phase transition...
We explore the dynamics of long-range Kitaev chain by varying pairing interaction exponent. It is we...
We study finite-temperature dynamical quantum phase transitions (DQPTs) by means of the fidelity and...
The development of ultracold atom physics enables people to study fundamental questions in quantum m...
We compare two different notions of dynamical phase transitions in closed quantum systems. The first...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in noninter...
The Loschmidt echo is a purely quantum-mechanical quantity whose determination for large quantum man...
Dynamical quantum phase transitions (DQPTs) are criticalities in the time evolution of quantum syste...
Recently, dynamical phase transitions have been identified based on the nonanalytic behavior of the ...
We report a dynamical quantum phase transition portrait in the alternating field transverse XY spin ...
| openaire: EC/H2020/892956/EU//QuLeeYangDynamical phase transitions extend the notion of criticalit...
We study the dynamical fidelity $\mathcal{F}(t)$ and the Loschmidt echo $\mathcal{L}(t)$ , followin...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in non-inte...
We unveil the role of the long time average of Loschmidt echo in the characterization of nonequilibr...
A local excitation in a quantum many-particle system evolves deterministically. A time-reversal proc...
Interacting many-body systems that are driven far away from equilibrium can exhibit phase transition...
We explore the dynamics of long-range Kitaev chain by varying pairing interaction exponent. It is we...
We study finite-temperature dynamical quantum phase transitions (DQPTs) by means of the fidelity and...
The development of ultracold atom physics enables people to study fundamental questions in quantum m...