Readout errors are among the most dominant errors on current noisy intermediate-scale quantum devices. Recently, an efficient and scaleable method for mitigating such errors has been developed, based on classical bit-flip correction. In this talk, we compare the performance of this method for IBM's and Rigetti's quantum devices, demonstrating how the method improves the noisy measurements of observables obtained on the quantum hardware. Moreover, we examine the variance amplification to the data after applying of our mitigation procedure, which is common to all mitigation strategies. We derive a new expression for the variance of the mitigated Pauli operators in terms of the corrected expectation values and the noisy variances. Our hardware...
Using near-term quantum computers to achieve a quantum advantage requires efficient strategies to im...
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...
We develop a classical bit-flip correction method to mitigate measurement errors on quantum computer...
We present an error mitigation scheme which corrects readout errors on Noisy Intermediate-Scale Quan...
Readout errors are a significant source of noise for near-term intermediate-scale quantum computers....
We apply quantum error mitigation (QEM) techniques to a variety of benchmark problems and quantum co...
We develop a classical bit-flip correction method to mitigate measurement errors on quantum computer...
Quantum computers are becoming increasingly accessible, and may soon outperform classical computers ...
Quantum computers need to be able to control highly entangled quantum states in the presence of envi...
Quantum computers need to be able to control highly entangled quantum states in the presence of envi...
Quantum computers need to be able to control highly entangled quantum states in the presence of envi...
41 pages, 3 figuresQuantum error mitigation has been proposed as a means to combat unavoidable error...
41 pages, 3 figuresQuantum error mitigation has been proposed as a means to combat unavoidable error...
Quantum computers promise huge speed-up over conventional computers in crucial problems like chemist...
Using near-term quantum computers to achieve a quantum advantage requires efficient strategies to im...
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...
We develop a classical bit-flip correction method to mitigate measurement errors on quantum computer...
We present an error mitigation scheme which corrects readout errors on Noisy Intermediate-Scale Quan...
Readout errors are a significant source of noise for near-term intermediate-scale quantum computers....
We apply quantum error mitigation (QEM) techniques to a variety of benchmark problems and quantum co...
We develop a classical bit-flip correction method to mitigate measurement errors on quantum computer...
Quantum computers are becoming increasingly accessible, and may soon outperform classical computers ...
Quantum computers need to be able to control highly entangled quantum states in the presence of envi...
Quantum computers need to be able to control highly entangled quantum states in the presence of envi...
Quantum computers need to be able to control highly entangled quantum states in the presence of envi...
41 pages, 3 figuresQuantum error mitigation has been proposed as a means to combat unavoidable error...
41 pages, 3 figuresQuantum error mitigation has been proposed as a means to combat unavoidable error...
Quantum computers promise huge speed-up over conventional computers in crucial problems like chemist...
Using near-term quantum computers to achieve a quantum advantage requires efficient strategies to im...
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...