With the rapid development of quantum technologies, a pressing need has emerged for a wide array of tools for the certification and characterization of quantum devices. Such tools are critical because the powerful applications of quantum information science will only be realized if stringent levels of precision of components can be reached and their functioning guaranteed. This Technical Review provides a brief overview of the known characterization methods for certification, benchmarking and tomographic reconstruction of quantum states and processes, and outlines their applications in quantum computing, simulation and communication
Current processes validation methods rely on diverse input states and exponential applications of st...
With the advent of public access to small gate-based quantum processors, it becomes necessary to dev...
Device-independent certification of quantum devices is of crucial importance for the development of ...
8 pages, 1 figure, 4 text boxes, 1 table, invited review for Nature ReviewsConcomitant with the rapi...
Quantum computers can, in theory, impressively reduce the time required to solve many pertinent prob...
Quantum technology promises revolutionary advantages in information processing and transmission comp...
In this thesis, we develop a number of operational tests and tools for benchmarking the quantum natu...
Quantum computers are a promising technology expected to provide substantial speedups to important c...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
Producing useful quantum information devices requires efficiently assessing control of quantum syste...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...
Quantum technologies promise a variety of exciting applications. Even though impressive progress has...
In theory, perfect quantum computers can solve certain problems that are con- sidered intractable wi...
© 2014 American Physical Society. Quantum technology promises revolutionary advantages in informatio...
The quality of quantum information processing devices has been improving at an unprecedented speed. ...
Current processes validation methods rely on diverse input states and exponential applications of st...
With the advent of public access to small gate-based quantum processors, it becomes necessary to dev...
Device-independent certification of quantum devices is of crucial importance for the development of ...
8 pages, 1 figure, 4 text boxes, 1 table, invited review for Nature ReviewsConcomitant with the rapi...
Quantum computers can, in theory, impressively reduce the time required to solve many pertinent prob...
Quantum technology promises revolutionary advantages in information processing and transmission comp...
In this thesis, we develop a number of operational tests and tools for benchmarking the quantum natu...
Quantum computers are a promising technology expected to provide substantial speedups to important c...
Certification of quantum devices received from unknown providers is a primary requirement before uti...
Producing useful quantum information devices requires efficiently assessing control of quantum syste...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...
Quantum technologies promise a variety of exciting applications. Even though impressive progress has...
In theory, perfect quantum computers can solve certain problems that are con- sidered intractable wi...
© 2014 American Physical Society. Quantum technology promises revolutionary advantages in informatio...
The quality of quantum information processing devices has been improving at an unprecedented speed. ...
Current processes validation methods rely on diverse input states and exponential applications of st...
With the advent of public access to small gate-based quantum processors, it becomes necessary to dev...
Device-independent certification of quantum devices is of crucial importance for the development of ...