Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of Noisy Intermediate-Scale Quantum (NISQ) devices. While QV values are often reported by NISQ providers for their systems, we perform our own series of QV calculations on 24 NISQ devices currently offered by IBM~Q, IonQ, Rigetti, Oxford Quantum Circuits, and Quantinuum (formerly Honeywell). Our approach characterizes the performances that an advanced user of these NISQ devices can expect to achieve with a reasonable amount of optimization, but without white-box access to the device. In particular, we compile QV circuits to standard gate sets of the vendor using compiler optimization routines where available, and we perform experiments across different...
Quantum computing systems need to be benchmarked in terms of practical tasks they would be expected ...
Quantum computing systems need to be benchmarked in terms of practical tasks they would be expected ...
The quantum approximate optimization algorithm (QAOA) is an approach for near-term quantum computers...
Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of noisy i...
The quantum volume test is a full-system benchmark for quantum computers that is sensitive to qubit ...
In this work, we propose a generalization of the current most widely used quantum computing hardware...
We improve the quality of quantum circuits on superconducting quantum computing systems, as measured...
Currently, quantum computing is making large steps to becoming a mature technology. Many companies a...
We introduce a volumetric benchmark for near-term quantum platforms based on the generation and veri...
Modern NISQ devices are subject to a variety of biases and sources of noise that degrade the solutio...
We present a post-compilation quantum circuit optimization technique that takes into account the var...
After spending 10 years in Quantum Computing and given the impending timeline of developing good qua...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
Publisher Copyright: AuthorWe provide evidence that commonly held intuitions when designing quantum ...
Quantum computing systems need to be benchmarked in terms of practical tasks they would be expected ...
Quantum computing systems need to be benchmarked in terms of practical tasks they would be expected ...
The quantum approximate optimization algorithm (QAOA) is an approach for near-term quantum computers...
Quantum volume (QV) has become the de-facto standard benchmark to quantify the capability of noisy i...
The quantum volume test is a full-system benchmark for quantum computers that is sensitive to qubit ...
In this work, we propose a generalization of the current most widely used quantum computing hardware...
We improve the quality of quantum circuits on superconducting quantum computing systems, as measured...
Currently, quantum computing is making large steps to becoming a mature technology. Many companies a...
We introduce a volumetric benchmark for near-term quantum platforms based on the generation and veri...
Modern NISQ devices are subject to a variety of biases and sources of noise that degrade the solutio...
We present a post-compilation quantum circuit optimization technique that takes into account the var...
After spending 10 years in Quantum Computing and given the impending timeline of developing good qua...
For a large number of tasks, quantum computing demonstrates the potential for exponential accelerati...
Variational quantum algorithms (VQAs) are expected to be a path to quantum advantages on noisy inter...
Publisher Copyright: AuthorWe provide evidence that commonly held intuitions when designing quantum ...
Quantum computing systems need to be benchmarked in terms of practical tasks they would be expected ...
Quantum computing systems need to be benchmarked in terms of practical tasks they would be expected ...
The quantum approximate optimization algorithm (QAOA) is an approach for near-term quantum computers...