16 pagesWe consider a new phenomenological model for a $1/f^{\\mu}$ classical intermittent noise and study its effects on the dephasing of a two-level system. Within this model, the evolution of the relative phase between the $|\\pm\\rangle$ states is described as a continuous time random walk (CTRW). Using renewal theory, we find exact expressions for the dephasing factor and identify the physically relevant various regimes in terms of the coupling to the noise. In particular, we point out the consequences of the non-stationarity and pronounced non-Gaussian features of this noise, including some new anomalous and aging dephasing scenarii
Fidelity is a convenient tool to study the sensitivity of quantum motion under Hamiltonian perturbat...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the time evolution of classical and quantum correlations for hybrid qubit–qutrit systems in...
16 pagesWe consider a new phenomenological model for a $1/f^{\\mu}$ classical intermittent noise and...
We investigate the influence of nonstationary $1/f^{\mu}$ noise, produced by interacting defects, on...
We investigate the influence of nonstationary 1/f^mu noise, produced by interacting defects, on a qu...
4 pages, 2 figures, to be published in the proceedings of the Vth Rencontres de Moriond in Mesoscopi...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
In a recent paper, [J. M. Porrà, J. Masoliver, and K. Lindenberg, Phys. Rev. E 48, 951 (1993)], we d...
We present a theoretical study of the influence of dephasing on shot noise in an electronic Mach-Zeh...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
Motivated by recent experiments with Josephson-junction circuits we reconsider decoherence e¡ects in...
The phenomenon of anomalous fluctuations associated with the decay of an unstable state is analyzed ...
In this paper we have studied the relaxation of the incoherent state to the coherent state...
Fidelity is a convenient tool to study the sensitivity of quantum motion under Hamiltonian perturbat...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the time evolution of classical and quantum correlations for hybrid qubit–qutrit systems in...
16 pagesWe consider a new phenomenological model for a $1/f^{\\mu}$ classical intermittent noise and...
We investigate the influence of nonstationary $1/f^{\mu}$ noise, produced by interacting defects, on...
We investigate the influence of nonstationary 1/f^mu noise, produced by interacting defects, on a qu...
4 pages, 2 figures, to be published in the proceedings of the Vth Rencontres de Moriond in Mesoscopi...
Reliable processing of quantum information is a milestone to achieve for the deployment of quantum t...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
In a recent paper, [J. M. Porrà, J. Masoliver, and K. Lindenberg, Phys. Rev. E 48, 951 (1993)], we d...
We present a theoretical study of the influence of dephasing on shot noise in an electronic Mach-Zeh...
We investigate the role of vacuum (zero-point) fluctuations in generating decoherence in a number of...
Motivated by recent experiments with Josephson-junction circuits we reconsider decoherence e¡ects in...
The phenomenon of anomalous fluctuations associated with the decay of an unstable state is analyzed ...
In this paper we have studied the relaxation of the incoherent state to the coherent state...
Fidelity is a convenient tool to study the sensitivity of quantum motion under Hamiltonian perturbat...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the time evolution of classical and quantum correlations for hybrid qubit–qutrit systems in...