Quantum computing is a fascinating research area which promises a revolution in computing performance. Since the launch of the IBM Quantum Experience project in 2016, the research activities in this area are strongly increased. This project provides the public access to quantum processors composed of superconducting physical computing elements known as qubits. Unfortunately, qubits are sensitive to noise and, for this reason, quantum computation can be affected by errors. As a consequence, there is a strong emergence for so- called quantum error mitigation methods aimed to attenuate the quantum error as much as possible, without requiring a strong additional computational effort. Among the most error- prone operations, there is surely the q...
While we expect quantum computers to surpass their classical counterparts in the future, current dev...
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 computing is a fascinating research area which promises a revolution in computing performanc...
Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of qu...
Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of qu...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
Quantum computing, while being a young technology, is facing a lot of problems and challenges relate...
Quantum error correction is capable of digitizing quantum noise and increasing the robustness of qub...
One of the fundamental obstacles for quantum computation (especially in noisy intermediate-scale qua...
One of the fundamental obstacles for quantum computation (especially in noisy intermediate-scale qua...
If noisy-intermediate-scale-quantum-era quantum computers are to perform useful tasks, they will nee...
We present a hardware agnostic error mitigation algorithm for near term quantum processors inspired ...
While we expect quantum computers to surpass their classical counterparts in the future, current dev...
While we expect quantum computers to surpass their classical counterparts in the future, current dev...
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 computing is a fascinating research area which promises a revolution in computing performanc...
Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of qu...
Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of qu...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
Quantum computing, while being a young technology, is facing a lot of problems and challenges relate...
Quantum error correction is capable of digitizing quantum noise and increasing the robustness of qub...
One of the fundamental obstacles for quantum computation (especially in noisy intermediate-scale qua...
One of the fundamental obstacles for quantum computation (especially in noisy intermediate-scale qua...
If noisy-intermediate-scale-quantum-era quantum computers are to perform useful tasks, they will nee...
We present a hardware agnostic error mitigation algorithm for near term quantum processors inspired ...
While we expect quantum computers to surpass their classical counterparts in the future, current dev...
While we expect quantum computers to surpass their classical counterparts in the future, current dev...
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...