Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of quantum computing in solving hard problems. However, quantum noise that characterizes this kind of devices still remains an obstacle for their practical exploitation in real world scenarios. As a consequence, there is a strong emergence for error correction techniques aimed at making NISQ devices stable and fully operative. Unfortunately, current approaches for quantum error correction are prohibitive for NISQ devices because of the enormous multiplicative cost in resources that they require. For this reason, so-called quantum error mitigation methods are emerging as alternative approaches able to attenuate the quantum error as much as possible...
Suppressing noise in physical systems is of fundamental importance. As quantum computers mature, qua...
We present a hardware agnostic error mitigation algorithm for near term quantum processors inspired ...
Our near-term quantum computers have been built as intermediate-scale quantum devices and are fragil...
Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of qu...
Quantum computing is a fascinating research area which promises a revolution in computing performanc...
Quantum computing is a fascinating research area which promises a revolution in computing performanc...
Quantum computing, while being a young technology, is facing a lot of problems and challenges relate...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
Quantum computers can exploit a Hilbert space whose dimension increases exponentially with the numbe...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
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...
While scalable, fully error corrected quantum computing is years or even decades away, there is cons...
A universal fault-tolerant quantum computer that can efficiently solve problems such as integer fact...
Suppressing noise in physical systems is of fundamental importance. As quantum computers mature, qua...
We present a hardware agnostic error mitigation algorithm for near term quantum processors inspired ...
Our near-term quantum computers have been built as intermediate-scale quantum devices and are fragil...
Noisy Intermediate Scale Quantum (NISQ) devices are expected to demonstrate the real potential of qu...
Quantum computing is a fascinating research area which promises a revolution in computing performanc...
Quantum computing is a fascinating research area which promises a revolution in computing performanc...
Quantum computing, while being a young technology, is facing a lot of problems and challenges relate...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
Quantum computers can exploit a Hilbert space whose dimension increases exponentially with the numbe...
A general method to mitigate the effect of errors in quantum circuits is outlined. The method is dev...
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...
While scalable, fully error corrected quantum computing is years or even decades away, there is cons...
A universal fault-tolerant quantum computer that can efficiently solve problems such as integer fact...
Suppressing noise in physical systems is of fundamental importance. As quantum computers mature, qua...
We present a hardware agnostic error mitigation algorithm for near term quantum processors inspired ...
Our near-term quantum computers have been built as intermediate-scale quantum devices and are fragil...