Neutral Atom Quantum Computing Hardware: Performance and End-User Perspective

04/27/2023
by   Karen Wintersperger, et al.
0

We present an industrial end-user perspective on the current state of quantum computing hardware for one specific technological approach, the neutral atom platform. Our aim is to assist developers in understanding the impact of the specific properties of these devices on the effectiveness of algorithm execution. Based on discussions with different vendors and recent literature, we discuss the performance data of the neutral atom platform. Specifically, we focus on the physical qubit architecture, which affects state preparation, qubit-to-qubit connectivity, gate fidelities, native gate instruction set, and individual qubit stability. These factors determine both the quantum-part execution time and the end-to-end wall clock time relevant for end-users, but also the ability to perform fault-tolerant quantum computation in the future. We end with an overview of which applications have been shown to be well suited for the peculiar properties of neutral atom-based quantum computers.

READ FULL TEXT
research
11/18/2021

Exploring Airline Gate-Scheduling Optimization Using Quantum Computers

This paper investigates the application of quantum computing technology ...
research
04/23/2022

Towards Bundle Adjustment for Satellite Imaging via Quantum Machine Learning

Given is a set of images, where all images show views of the same area a...
research
04/21/2021

Scalable Benchmarks for Gate-Based Quantum Computers

In the near-term "NISQ"-era of noisy, intermediate-scale, quantum hardwa...
research
02/21/2019

On the qubit routing problem

We introduce a new architecture-agnostic methodology for mapping abstrac...
research
09/01/2023

Quantum Cognitive Modeling: New Applications and Systems Research Directions

Expanding the benefits of quantum computing to new domains remains a cha...
research
06/07/2023

Influence of HW-SW-Co-Design on Quantum Computing Scalability

The use of quantum processing units (QPUs) promises speed-ups for solvin...
research
08/24/2021

EQUAL: Improving the Fidelity of Quantum Annealers by Injecting Controlled Perturbations

Quantum computing is an information processing paradigm that uses quantu...

Please sign up or login with your details

Forgot password? Click here to reset