It is often the case that the environment of a quantum system may be described as a bath of oscillators with an ohmic density of states. In turn, the precise characterization of these classes of environments is a crucial tool to engineer decoherence or to tailor quantum information protocols. Recently, the use of quantum probes in characterizing ohmic environments at zero-temperature has been discussed, showing that a single qubit provides precise estimation of the cutoff frequency. On the other hand, thermal noise often spoil quantum probing schemes, and for this reason we here extend the analysis to a complex system at thermal equilibrium. In particular, we discuss the interplay between thermal fluctuations and time evolution in determini...
This is the final version. Available from American Physical Society via the DOI in this recordThe un...
We address parameter estimation for structured environments and suggest an effective estimation sche...
We address open quantum systems out-of-equilibrium as effective quantum probes for the characterisat...
6noWe address a particular instance where open quantum systems may be used as quantum probes for an ...
This thesis work fits into the framework of quantum decoherence and open quantum systems, prominent ...
Quantum probing consists of suitably exploiting a simple, small, and controllable quantum system to ...
Nonequilibrium states of quantum systems in contact with thermal baths help distinguishing between e...
Informational quantities characterizing the qubit are analyzed in the presence of quantum thermal no...
From a qubit in a noisy state affected by an uncontrolled decohering environment represented by a th...
This is the final version. Available from American Physical Society via the DOI in this recordPrecis...
Single-qubit thermometry presents the simplest tool to measure the temperature of thermal baths with...
What is the minimum time required to take a temperature? In this paper, we solve this question for a...
We assess precision thermometry for an arbitrary single quantum system. For a d-dimensional harmonic...
We address the dephasing dynamics of a qubit as an effective process to estimate the temperature of ...
The task fundamental to quantum communication and coding is considered which consists of detecting b...
This is the final version. Available from American Physical Society via the DOI in this recordThe un...
We address parameter estimation for structured environments and suggest an effective estimation sche...
We address open quantum systems out-of-equilibrium as effective quantum probes for the characterisat...
6noWe address a particular instance where open quantum systems may be used as quantum probes for an ...
This thesis work fits into the framework of quantum decoherence and open quantum systems, prominent ...
Quantum probing consists of suitably exploiting a simple, small, and controllable quantum system to ...
Nonequilibrium states of quantum systems in contact with thermal baths help distinguishing between e...
Informational quantities characterizing the qubit are analyzed in the presence of quantum thermal no...
From a qubit in a noisy state affected by an uncontrolled decohering environment represented by a th...
This is the final version. Available from American Physical Society via the DOI in this recordPrecis...
Single-qubit thermometry presents the simplest tool to measure the temperature of thermal baths with...
What is the minimum time required to take a temperature? In this paper, we solve this question for a...
We assess precision thermometry for an arbitrary single quantum system. For a d-dimensional harmonic...
We address the dephasing dynamics of a qubit as an effective process to estimate the temperature of ...
The task fundamental to quantum communication and coding is considered which consists of detecting b...
This is the final version. Available from American Physical Society via the DOI in this recordThe un...
We address parameter estimation for structured environments and suggest an effective estimation sche...
We address open quantum systems out-of-equilibrium as effective quantum probes for the characterisat...