Modern NISQ devices are subject to a variety of biases and sources of noise that degrade the solution quality of computations carried out on these devices. A natural question that arises in the NISQ era, is how fairly do these devices sample ground state solutions. To this end, we run five fair sampling problems (each with at least three ground state solutions) that are based both on quantum annealing and on the Grover Mixer-QAOA algorithm for gate-based NISQ hardware. In particular, we use seven IBM~Q devices, the Aspen-9 Rigetti device, the IonQ device, and three D-Wave quantum annealers. For each of the fair sampling problems, we measure the ground state probability, the relative fairness of the frequency of each ground state solution wi...
Quantum annealing (QA) and Quantum Alternating Operator Ansatz (QAOA) are both heuristic quantum alg...
First quantum computers very recently have demonstrated “quantum supremacy” or “quantum advantage Ex...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...
Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of Noisy I...
We present a post-compilation quantum circuit optimization technique that takes into account the var...
We introduce a volumetric benchmark for near-term quantum platforms based on the generation and veri...
Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of noisy i...
We describe Superstaq, a quantum software platform that optimizes the execution of quantum programs ...
Noisy intermediate-scale quantum (NISQ) computers are coming online. The lack of error-correction in...
The debate around the potential superiority of quantum annealers over their classical counterparts h...
Quantum search algorithm (also known as Grover's algorithm) lays the foundation for many other quant...
After spending 10 years in Quantum Computing and given the impending timeline of developing good qua...
A universal fault-tolerant quantum computer that can efficiently solve problems such as integer fact...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
Quantum computers have the potential to outperform classical computers in a range of computational t...
Quantum annealing (QA) and Quantum Alternating Operator Ansatz (QAOA) are both heuristic quantum alg...
First quantum computers very recently have demonstrated “quantum supremacy” or “quantum advantage Ex...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...
Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of Noisy I...
We present a post-compilation quantum circuit optimization technique that takes into account the var...
We introduce a volumetric benchmark for near-term quantum platforms based on the generation and veri...
Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of noisy i...
We describe Superstaq, a quantum software platform that optimizes the execution of quantum programs ...
Noisy intermediate-scale quantum (NISQ) computers are coming online. The lack of error-correction in...
The debate around the potential superiority of quantum annealers over their classical counterparts h...
Quantum search algorithm (also known as Grover's algorithm) lays the foundation for many other quant...
After spending 10 years in Quantum Computing and given the impending timeline of developing good qua...
A universal fault-tolerant quantum computer that can efficiently solve problems such as integer fact...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
Quantum computers have the potential to outperform classical computers in a range of computational t...
Quantum annealing (QA) and Quantum Alternating Operator Ansatz (QAOA) are both heuristic quantum alg...
First quantum computers very recently have demonstrated “quantum supremacy” or “quantum advantage Ex...
Accurate and precise control of large quantum systems is paramount to achieve practical advantages o...