We investigate Quantum Darwinism and the emergence of a classical world from the quantum one in connection with the spectral properties of the environment. We use a microscopic model of quantum environment in which, by changing a simple system parameter, we can modify the information back flow from environment into the system, and therefore its non-Markovian character. We show that the presence of memory effects hinders the emergence of classical objective reality, linking these two apparently unrelated concepts via a unique dynamical feature related to decoherence factors.Funding from EU (FEDER), CSIC (JAE contract), EU project QuPRoCS (Grant Agreement 641277), UIB (visiting professors program), and MINECO (FIS201460343-P) is acknowledged....
Quantum system interacting with environment can induce redundant encoding of the information of syst...
It is often assumed that decoherence arises as a result of the entangling interaction between a quan...
We study the behavior of Quantum Darwinism [W.H. Zurek, Nat. Phys. 5, 181 (2009)] within t...
We investigate Quantum Darwinism and the emergence of a classical world from the quantum one in c...
7 pages, 9 figuresInternational audienceQuantum Darwinism attempts to explain the emergence of objec...
Quantum Darwinism attempts to explain the emergence of objective reality of the state of a quantum s...
Quantum Darwinism attempts to explain the emergence of objective reality of the state of a quantum s...
State of the art and motivations In quantum mechanics, the Schrödinger equation regulates the evolu...
Recent developments in practical quantum engineering and control techniques have allowed significant...
Quantum memory effects can be qualitatively understood as a consequence of an environment-to-system ...
During the last ten years, the studies on non-Markovian open system dynamics has become increasingly...
Modifying the Markovian (memoryless) or non-Markovian (memory-keeping) nature of the environment-ind...
Modifying the Markovian (memoryless) or non-Markovian (memory-keeping) nature of the environment-ind...
Quantum Darwinism proposes that the proliferation of redundant information plays a major role in the...
For classical Markovian stochastic systems, past and future events become statistically independent ...
Quantum system interacting with environment can induce redundant encoding of the information of syst...
It is often assumed that decoherence arises as a result of the entangling interaction between a quan...
We study the behavior of Quantum Darwinism [W.H. Zurek, Nat. Phys. 5, 181 (2009)] within t...
We investigate Quantum Darwinism and the emergence of a classical world from the quantum one in c...
7 pages, 9 figuresInternational audienceQuantum Darwinism attempts to explain the emergence of objec...
Quantum Darwinism attempts to explain the emergence of objective reality of the state of a quantum s...
Quantum Darwinism attempts to explain the emergence of objective reality of the state of a quantum s...
State of the art and motivations In quantum mechanics, the Schrödinger equation regulates the evolu...
Recent developments in practical quantum engineering and control techniques have allowed significant...
Quantum memory effects can be qualitatively understood as a consequence of an environment-to-system ...
During the last ten years, the studies on non-Markovian open system dynamics has become increasingly...
Modifying the Markovian (memoryless) or non-Markovian (memory-keeping) nature of the environment-ind...
Modifying the Markovian (memoryless) or non-Markovian (memory-keeping) nature of the environment-ind...
Quantum Darwinism proposes that the proliferation of redundant information plays a major role in the...
For classical Markovian stochastic systems, past and future events become statistically independent ...
Quantum system interacting with environment can induce redundant encoding of the information of syst...
It is often assumed that decoherence arises as a result of the entangling interaction between a quan...
We study the behavior of Quantum Darwinism [W.H. Zurek, Nat. Phys. 5, 181 (2009)] within t...