We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-preserving quantum map, which in turn is sufficient for the full characterization of any unitary evolution or, more generally, any unital trace-preserving evolution. This approach inherits randomized benchmarking’s robustness to preparation, measurement, and gate imperfections, thereby avoiding systematic errors caused by these imperfections. We also extend these techniques to efficiently estimate the average fidelity of a quantum map to unitary maps outside of the Clifford group. The unitaries we consider correspond to large circuits commonly used as building blocks to achieve scalable, universal, and fault-tolerant quantum computation. Hence, w...
We propose a quantum tomography scheme for pure qudit systems which adopts a certain version of rand...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
We train convolutional neural networks to predict whether or not a set of measurements is informatio...
We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-pres...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Typical quantum gate tomography protocols struggle with a self-consistency problem: the gate operati...
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...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Randomized benchmarking refers to a collection of protocols that in the past decade have become cent...
The distant promise of a full-scale fault-tolerant universal quantum computer offers a speed-up in ...
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...
We propose a quantum tomography scheme for pure qudit systems which adopts a certain version of rand...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
We train convolutional neural networks to predict whether or not a set of measurements is informatio...
We describe how randomized benchmarking can be used to reconstruct the unital part of any trace-pres...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Typical quantum gate tomography protocols struggle with a self-consistency problem: the gate operati...
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...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Randomized benchmarking refers to a collection of protocols that in the past decade have become cent...
The distant promise of a full-scale fault-tolerant universal quantum computer offers a speed-up in ...
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...
We propose a quantum tomography scheme for pure qudit systems which adopts a certain version of rand...
Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of...
We train convolutional neural networks to predict whether or not a set of measurements is informatio...