Characterizing quantum processes is a key task in the development of quantum technologies, especially at the noisy intermediate scale of today’s devices. One method for characterizing processes is randomized benchmarking, which is robust against state preparation and measurement errors and can be used to benchmark Clifford gates. Compressed sensing techniques achieve full tomography of quantum channels essentially at optimal resource efficiency. In this Letter, we show that the favorable features of both approaches can be combined. For characterizing multiqubit unitary gates, we provide a rigorously guaranteed and practical reconstruction method that works with an essentially optimal number of average gate fidelities measured with respect t...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-pres...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-pres...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
Quantum process tomography is the task of reconstructing unknown quantum channels from measured data...
We consider an extension of the concept of spherical t-designs to the unitary group in order to deve...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-pres...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-pres...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
Quantum process tomography is the task of reconstructing unknown quantum channels from measured data...
We consider an extension of the concept of spherical t-designs to the unitary group in order to deve...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
With quantum computing devices increasing in scale and complexity, there is a growing need for tools...