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Essential entanglement for atomic and molecular physics
Entanglement is nowadays considered as a key quantity for the understanding of
correlations, transport properties and phase transitions in composite quantum systems, and …
correlations, transport properties and phase transitions in composite quantum systems, and …
Many-body open quantum systems
These Lecture Notes discuss the recent theoretical advances in the understanding of open
quantum many-body physics in platforms where both dissipative and coherent processes …
quantum many-body physics in platforms where both dissipative and coherent processes …
Recovering entanglement by local operations
We investigate the phenomenon of bipartite entanglement revivals under purely local
operations in systems subject to local and independent classical noise sources. We explain …
operations in systems subject to local and independent classical noise sources. We explain …
Experimental simulation of decoherence in photonics qudits
We experimentally perform the simulation of open quantum dynamics in single-qudit
systems. Using a spatial light modulator as a dissipative optical device, we implement …
systems. Using a spatial light modulator as a dissipative optical device, we implement …
Heralded Bell state of dissipative qubits using classical light in a waveguide
Maximally entangled two-qubit states (Bell states) are of central importance in quantum
technologies. We show that heralded generation of a maximally entangled state of two …
technologies. We show that heralded generation of a maximally entangled state of two …
Hidden entanglement, system-environment information flow and non-Markovianity
It is known that entanglement dynamics of two non-interacting qubits, locally subjected to
classical environments, may exhibit revivals. A simple explanation of this phenomenon may …
classical environments, may exhibit revivals. A simple explanation of this phenomenon may …
Parametrization and optimization of Gaussian non-Markovian unravelings for open quantum dynamics
We derive a family of Gaussian non-Markovian stochastic Schrödinger equations for the
dynamics of open quantum systems. The different unravelings correspond to different …
dynamics of open quantum systems. The different unravelings correspond to different …
Distant entanglement protected through artificially increased local temperature
In composed quantum systems, the presence of local dissipative channels causes loss of
coherence and entanglement at a rate that grows with the temperature of the reservoirs …
coherence and entanglement at a rate that grows with the temperature of the reservoirs …
Random quantum states: recent developments and applications
JD Urbina, K Richter - Advances in Physics, 2013 - Taylor & Francis
We review the methods and use of random quantum states with particular emphasis on
recent theoretical developments and applications in various fields. The guiding principle of …
recent theoretical developments and applications in various fields. The guiding principle of …
Markovian dynamics for a quantum/classical system and quantum trajectories
A Barchielli - Journal of Physics A: Mathematical and Theoretical, 2024 - iopscience.iop.org
Quantum trajectory techniques have been used in the theory of open systems as a starting
point for numerical computations and to describe the monitoring of a quantum system in …
point for numerical computations and to describe the monitoring of a quantum system in …