We present an analog of the phenomenon of orthogonality catastrophe in quantum many-body systems subject to a local dissipative impurity. We show that the fidelity F(t), giving a measure for distance of the time-evolved state from the initial one, displays a universal scaling form F(t)∝t^θe^-γt, when the system supports long-range correlations, in a fashion reminiscent of traditional instances of orthogonality catastrophe in condensed matter. An exponential falloff at rate γ signals the onset of environmental decoherence, which is critically slowed down by the additional algebraic contribution to the fidelity. This picture is derived within a second-order cumulant expansion suited for Liouvillian dynamics, and substantiated for the one-dime...
v3: minor changes, published versionInternational audienceWe study the response of a highly-excited ...
We consider environment induced decoherence of quantum superpositions to mixtures in the limit in wh...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...
We present an analog of the phenomenon of orthogonality catastrophe in quantum many-body systems sub...
A remarkable feature of quantum many-body systems is the orthogonality catastrophe that describes th...
The local density of states or its Fourier transform, usually called fidelity amplitude, are importa...
We study a modified version of the ''AgBr'' Hamiltonian and analyze its weak-coupling, macroscopic l...
The adiabatic theorem is a fundamental result in quantum mechanics, which states that a system can b...
We address the phenomenon of statistical orthogonality catastrophe in insulating disordered systems....
We present a formulation for investigating quench dynamics across quantum phase transitions in the p...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
We study the ultimate limits to the decoherence rate associated with dephasing processes. Fluctuatin...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum phase transitions reflect singular changes taking place in a many-body ground state; however...
We investigate the quantum dynamics of many-body systems subject to local (i.e., restricted to a lim...
v3: minor changes, published versionInternational audienceWe study the response of a highly-excited ...
We consider environment induced decoherence of quantum superpositions to mixtures in the limit in wh...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...
We present an analog of the phenomenon of orthogonality catastrophe in quantum many-body systems sub...
A remarkable feature of quantum many-body systems is the orthogonality catastrophe that describes th...
The local density of states or its Fourier transform, usually called fidelity amplitude, are importa...
We study a modified version of the ''AgBr'' Hamiltonian and analyze its weak-coupling, macroscopic l...
The adiabatic theorem is a fundamental result in quantum mechanics, which states that a system can b...
We address the phenomenon of statistical orthogonality catastrophe in insulating disordered systems....
We present a formulation for investigating quench dynamics across quantum phase transitions in the p...
We consider a dynamic protocol for quantum many-body systems, which enables us to study the interpla...
We study the ultimate limits to the decoherence rate associated with dephasing processes. Fluctuatin...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum phase transitions reflect singular changes taking place in a many-body ground state; however...
We investigate the quantum dynamics of many-body systems subject to local (i.e., restricted to a lim...
v3: minor changes, published versionInternational audienceWe study the response of a highly-excited ...
We consider environment induced decoherence of quantum superpositions to mixtures in the limit in wh...
The Fermi-edge singularity and the Anderson orthogonality catastrophe describe the universal physics...