Reliable and well-characterized quantum resources are indispensable ingredients in quantum information processing. Typically, in a realistic characterization of these resources, apparatuses come with intrinsic uncertainties that can manifest themselves in the form of systematic errors. While systematic errors are generally accounted for through careful calibration, the effect of remaining imperfections on the characterization of quantum resources has been largely overlooked in the literature. In this paper, we investigate the effect of systematic errors that arise from imperfect alignment of measurement bases—an error that can conceivably take place due to the limited controllability of measurement devices. We show that characterization of ...
The outcomes of quantum mechanical measurements are inherently random. It is therefore necessary to ...
Current techniques in quantum process tomography typically return a single point estimate of an unkn...
Randomised measurements provide a way of determining physical quantities without the need for a shar...
tomography and entanglement witnesses ROSSET, Denis, et al. Reliable and well-characterized quantum ...
We show that quantum state tomography with perfect knowledge of the measurement apparatus proves to ...
Quantum tomography is a critically important tool to evaluate quantum hardware, making it essential ...
Quantum state tomography is the task of inferring the state of a quantum system by appropriate measu...
The principle behind quantum tomography is that a large set of observations—many samples from a 'quo...
Precise characterization of quantum devices is usually achieved with quantum tomography. However, mo...
Quantum computation - the use of quantum systems as bits, or qubits, to perform computation - has be...
An efficient method for assessing the quality of quantum state tomography is developed. Special atte...
We investigate entanglement detection when the local measurements only nearly correspond to those in...
Fidelity is a figure of merit widely employed in quantum technology in order to quantify similarity ...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Precise characterization of quantum devices is usually achieved with quantum tomography. However, mo...
The outcomes of quantum mechanical measurements are inherently random. It is therefore necessary to ...
Current techniques in quantum process tomography typically return a single point estimate of an unkn...
Randomised measurements provide a way of determining physical quantities without the need for a shar...
tomography and entanglement witnesses ROSSET, Denis, et al. Reliable and well-characterized quantum ...
We show that quantum state tomography with perfect knowledge of the measurement apparatus proves to ...
Quantum tomography is a critically important tool to evaluate quantum hardware, making it essential ...
Quantum state tomography is the task of inferring the state of a quantum system by appropriate measu...
The principle behind quantum tomography is that a large set of observations—many samples from a 'quo...
Precise characterization of quantum devices is usually achieved with quantum tomography. However, mo...
Quantum computation - the use of quantum systems as bits, or qubits, to perform computation - has be...
An efficient method for assessing the quality of quantum state tomography is developed. Special atte...
We investigate entanglement detection when the local measurements only nearly correspond to those in...
Fidelity is a figure of merit widely employed in quantum technology in order to quantify similarity ...
Quantum enhancements of precision in metrology can be compromised by system imperfections. These may...
Precise characterization of quantum devices is usually achieved with quantum tomography. However, mo...
The outcomes of quantum mechanical measurements are inherently random. It is therefore necessary to ...
Current techniques in quantum process tomography typically return a single point estimate of an unkn...
Randomised measurements provide a way of determining physical quantities without the need for a shar...