A long-standing challenge in the foundations of quantum mechanics is the verification of alternative collapse theories despite their mathematical similarity to decoherence. To this end, we suggest a method based on dynamical decoupling. Experimental observation of nonzero saturation of the decoupling error in the limit of fast-decoupling operations can provide evidence for alternative quantum theories. The low decay rates predicted by collapse models are challenging, but high-fidelity measurements as well as recent advances in decoupling schemes for qubits let us explore a similar parameter regime to experiments based on macroscopic superpositions. As part of the analysis we prove that unbounded Hamiltonians can be perfectly decoupled. We d...
Quantum Darwinism—the redundant encoding of information about a decohering system in its environment...
International audienceQuantum dynamical decoupling is a procedure to cancel the effective coupling b...
In the long quest to identify and compensate the sources of decoherence in many-body systems far fro...
A long-standing challenge in the foundations of quantum mechanics is the verification of alternative...
Transitions from specific quantum states to mixtures of several different states are common occurren...
Major revision of the previous article published on the same website: 'The Role of Decoherence in Qu...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...
We investigate the possibility to suppress interactions between a finite dimensional system and an i...
A system prepared in an unstable quantum state generally decays following an exponential law, as env...
For finite-dimensional quantum systems, such as qubits, a well established strategy to protect such ...
Dynamical decoupling is a key method to mitigate errors in a quantum mechanical system, and we studi...
It is often assumed that decoherence arises as a result of the entangling interaction between a quan...
We investigate the relationship between non-Markovianity and the effectiveness of a dynamical decoup...
The quantum decoherence program has become more attractive in providing an acceptable solution for t...
Quantum mechanics exhibits a broad collection of theoretical results in complete agreement with expe...
Quantum Darwinism—the redundant encoding of information about a decohering system in its environment...
International audienceQuantum dynamical decoupling is a procedure to cancel the effective coupling b...
In the long quest to identify and compensate the sources of decoherence in many-body systems far fro...
A long-standing challenge in the foundations of quantum mechanics is the verification of alternative...
Transitions from specific quantum states to mixtures of several different states are common occurren...
Major revision of the previous article published on the same website: 'The Role of Decoherence in Qu...
The results of some simple calculations designed to study quantum decoherence are presented. The phy...
We investigate the possibility to suppress interactions between a finite dimensional system and an i...
A system prepared in an unstable quantum state generally decays following an exponential law, as env...
For finite-dimensional quantum systems, such as qubits, a well established strategy to protect such ...
Dynamical decoupling is a key method to mitigate errors in a quantum mechanical system, and we studi...
It is often assumed that decoherence arises as a result of the entangling interaction between a quan...
We investigate the relationship between non-Markovianity and the effectiveness of a dynamical decoup...
The quantum decoherence program has become more attractive in providing an acceptable solution for t...
Quantum mechanics exhibits a broad collection of theoretical results in complete agreement with expe...
Quantum Darwinism—the redundant encoding of information about a decohering system in its environment...
International audienceQuantum dynamical decoupling is a procedure to cancel the effective coupling b...
In the long quest to identify and compensate the sources of decoherence in many-body systems far fro...