Unitarity randomized benchmarking (URB) is an experimental procedure for estimating the coherence of implemented quantum gates independently of state preparation and measurement errors. These estimates of the coherence are measured by the unitarity. A central problem in this experiment is relating the number of data points to rigorous confidence intervals. In this work we provide a bound on the required number of data points for Clifford URB as a function of confidence and experimental parameters. This bound has favorable scaling in the regime of near-unitary noise and is asymptotically independent of the length of the gate sequences used. We also show that, in contrast to standard randomized benchmarking, a nontrivial number of data points...
The distant promise of a full-scale fault-tolerant universal quantum computer offers a speed-up in ...
The performance of quantum gates is often assessed using some form of randomized benchmarking. Howev...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...
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...
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 computers have the potential to bring about a new age of technology, but in order for them t...
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...
Randomized benchmarking (RB) is an efficient and robust method to characterize gate errors in quantu...
Randomized benchmarking (RB) is an efficient and robust method to characterize gate errors in quantu...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Randomized benchmarking provides a tool for obtaining precise quantitative estimates of the average ...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
The distant promise of a full-scale fault-tolerant universal quantum computer offers a speed-up in ...
The performance of quantum gates is often assessed using some form of randomized benchmarking. Howev...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...
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...
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 computers have the potential to bring about a new age of technology, but in order for them t...
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...
Randomized benchmarking (RB) is an efficient and robust method to characterize gate errors in quantu...
Randomized benchmarking (RB) is an efficient and robust method to characterize gate errors in quantu...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
Randomized benchmarking provides a tool for obtaining precise quantitative estimates of the average ...
Characterizing quantum processes is a key task in the development of quantum technologies, especiall...
The distant promise of a full-scale fault-tolerant universal quantum computer offers a speed-up in ...
The performance of quantum gates is often assessed using some form of randomized benchmarking. Howev...
Quantum computers promise to be a revolutionary new technology. However, in order to realise this pr...