We investigate the validity of quantum regression for a family of quantum Hamiltonians on a multipartite system leading to phase-damping reduced dynamics. After finding necessary and sufficient conditions for the CP-divisibility of the corresponding channel, we evaluate a hierarchy of equations equivalent to the validity of quantum regression under arbitrary interventions; in particular, we find necessary conditions for a nontrivial dephasing to be compatible with quantum regression. In this framework, we study a class of dephasing-type generalized spin-boson (GSB) models, investigating the existence of qubit-environment coupling functions that ensure the exact validity of quantum regression.Comment: 24 pages, 1 figur
This thesis is centred around the striking phenomenon of non-Markovianity which emanates from exact...
We study the quantum capacity of a continuous-variable dephasing channel, which is a notable example...
The study and control of coherence in quantum systems is one of the most exciting recent development...
The quantum regression formula for an open quantum system consists in an infinite hierarchy of condi...
We explore the connection between two recently introduced notions of non-Markovian quantum dynamics ...
We investigate the relationship between non-Markovianity and the effectiveness of a dynamical decoup...
We study analytically the non-Markovianity of a spin ensemble, with arbitrary number of spins and sp...
We provide a quantitative evaluation of non-Markovianity (NM) for an XX chain of interacting qubits ...
Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techni...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
We study a decoherence reduction scheme that involves an intermediate measurement on the qubit in an...
We develop a notion of dephasing under the action of a quantum Markov semigroup in terms of converge...
Quantum regression theorem is a very useful result in open quantum system and extensively used for c...
We study the constraints imposed on the population and phase relaxation rates by the requirement tha...
Advancements in the technology of quantum bits invoke more precise calculations for decoherence and ...
This thesis is centred around the striking phenomenon of non-Markovianity which emanates from exact...
We study the quantum capacity of a continuous-variable dephasing channel, which is a notable example...
The study and control of coherence in quantum systems is one of the most exciting recent development...
The quantum regression formula for an open quantum system consists in an infinite hierarchy of condi...
We explore the connection between two recently introduced notions of non-Markovian quantum dynamics ...
We investigate the relationship between non-Markovianity and the effectiveness of a dynamical decoup...
We study analytically the non-Markovianity of a spin ensemble, with arbitrary number of spins and sp...
We provide a quantitative evaluation of non-Markovianity (NM) for an XX chain of interacting qubits ...
Engineering, controlling, and simulating quantum dynamics is a strenuous task. However, these techni...
Entanglement enhanced quantum metrology has been well investigated for beating the standard quantum ...
We study a decoherence reduction scheme that involves an intermediate measurement on the qubit in an...
We develop a notion of dephasing under the action of a quantum Markov semigroup in terms of converge...
Quantum regression theorem is a very useful result in open quantum system and extensively used for c...
We study the constraints imposed on the population and phase relaxation rates by the requirement tha...
Advancements in the technology of quantum bits invoke more precise calculations for decoherence and ...
This thesis is centred around the striking phenomenon of non-Markovianity which emanates from exact...
We study the quantum capacity of a continuous-variable dephasing channel, which is a notable example...
The study and control of coherence in quantum systems is one of the most exciting recent development...