ID: quant-ph/0607050

Dynamics of Loschmidt echoes and fidelity decay

July 7, 2006

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Decoherence and the Loschmidt echo

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F. M. Cucchietti, D. A. R. Dalvit, ... , Zurek W. H.
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Environment--induced decoherence causes entropy increase. It can be quantified using, e.g., the purity $\varsigma={\rm Tr}\rho^2$. When the Hamiltonian of a quantum system is perturbed, its sensitivity to such perturbation can be measured by the Loschmidt echo $\bar M(t)$. It is given by the average squared overlap between the perturbed and unperturbed state. We describe the relation between the temporal behavior of $\varsigma(t)$ and $\bar M(t)$. In this way we show that the...

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Semiclassical evaluation of quantum fidelity

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Jiri Vanicek, Eric J. Heller
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We present a numerically feasible semiclassical (SC) method to evaluate quantum fidelity decay (Loschmidt echo, FD) in a classically chaotic system. It was thought that such evaluation would be intractable, but instead we show that a uniform SC expression not only is tractable but it gives remarkably accurate numerical results for the standard map in both the Fermi-golden-rule and Lyapunov regimes. Because it allows Monte Carlo evaluation, the uniform expression is accurate a...

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Signature of nonequilibrium quantum phase transition in the long time average of Loschmidt echo

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Bozhen Zhou, Chao Yang, Shu Chen
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We unveil the role of the long time average of Loschmidt echo in the characterization of nonequilibrium quantum phase transitions by studying sudden quench processes across quantum phase transitions in various quantum systems. While the dynamical quantum phase transitions are characterized by the emergence of a series of zero points at critical times during time evolution, we demonstrate that nonequilibrium quantum phase transitions can be identified by nonanalyticities in th...

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Semiclassical approach to fidelity amplitude

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Ignacio García-Mata, Raúl O. Vallejos, Diego A. Wisniacki
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The fidelity amplitude is a quantity of paramount importance in echo type experiments. We use semiclassical theory to study the average fidelity amplitude for quantum chaotic systems under external perturbation. We explain analytically two extreme cases: the random dynamics limit --attained approximately by strongly chaotic systems-- and the random perturbation limit, which shows a Lyapunov decay. Numerical simulations help us bridge the gap between both extreme cases.

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The Loschmidt echo in classically chaotic systems: Quantum chaos, irreversibility and decoherence

October 15, 2004

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Fernando M. Cucchietti
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The Loschmidt echo (LE) is a measure of the sensitivity of quantum mechanics to perturbations in the evolution operator. It is defined as the overlap of two wave functions evolved from the same initial state but with slightly different Hamiltonians. Thus, it also serves as a quantification of irreversibility in quantum mechanics. In this thesis the LE is studied in systems that have a classical counterpart with dynamical instability, that is, classically chaotic. An analyti...

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Decoherence as Decay of the Loschmidt Echo in a Lorentz Gas

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F. M. Cucchietti, H. M. Pastawski, D. A. Wisniacki
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Chaotic Dynamics

Classical chaotic dynamics is characterized by the exponential sensitivity to initial conditions. Quantum mechanics, however, does not show this feature. We consider instead the sensitivity of quantum evolution to perturbations in the Hamiltonian. This is observed as an atenuation of the Loschmidt Echo, $M(t)$, i.e. the amount of the original state (wave packet of width $\sigma$) which is recovered after a time reversed evolution, in presence of a classically weak perturbatio...

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Loschmidt echo and fidelity decay near an exceptional point

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Stefano Longhi
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Non-Hermitian classical and open quantum systems near an exceptional point (EP) are known to undergo strong deviations in their dynamical behavior under small perturbations or slow cycling of parameters as compared to Hermitian systems. Such a strong sensitivity is at the heart of many interesting phenomena and applications, such as the asymmetric breakdown of the adiabatic theorem, enhanced sensing, non-Hermitian dynamical quantum phase transitions and photonic catastrophe. ...

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Loschmidt echoes in two-body random matrix ensembles

February 5, 2007

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Iztok Pizorn, Tomaz Prosen, Thomas H. Seligman
Other Condensed Matter
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Fidelity decay is studied for quantum many-body systems with a dominant independent particle Hamiltonian resulting e.g. from a mean field theory with a weak two-body interaction. The diagonal terms of the interaction are included in the unperturbed Hamiltonian, while the off-diagonal terms constitute the perturbation that distorts the echo. We give the linear response solution for this problem in a random matrix framework. While the ensemble average shows no surprising behavi...

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Decay of the Loschmidt echo in a time-dependent environment

January 11, 2006

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Fernando M. Cucchietti, Caio H. Lewenkopf, Horacio M. Pastawski
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We study the decay rate of the Loschmidt echo or fidelity in a chaotic system under a time-dependent perturbation $V(q,t)$ with typical strength $\hbar/\tau_{V}$. The perturbation represents the action of an uncontrolled environment interacting with the system, and is characterized by a correlation length $\xi_0$ and a correlation time $\tau_0$. For small perturbation strengths or rapid fluctuating perturbations, the Loschmidt echo decays exponentially with a rate predicted b...

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Semiclassical approach to the quantum Loschmidt echo in deep quantum regions: from validity to breakdown

September 1, 2012

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Pinquan Qin, Qian Wang, Wen-ge Wang
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Semiclassical results are usually expected to be valid in the semiclassical regime. An interesting question is, in models in which appropriate effective Planck constants can be introduced, to what extent will a semiclassical prediction stay valid when the effective Planck constant is increased? In this paper, we numerically study this problem, focusing on semiclassical predictions for the decay of the quantum Loschmidt echo in deep quantum regions. Our numerical simulations, ...

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