How Many Shots Does It Take? A Noise-Aware Quantum Resource Allocation Framework
Abstract
Any algorithm execution on quantum computers requires several repeated and costly executions (known as shots) to obtain reliable results. In this work, we propose a closed-form accurate analytical expression to determine optimal number of shots required for reliable execution of any algorithm on a quantum computer. We also present a theoretically grounded technique to distribute fixed shot budget across different partitions in a quantum circuit minimizing the total error. Our proposed analytical model helps to reduce the shots associated with reliable execution of quantum algorithms by about 58\% compared to current practice, in turn reducing the energy consumption by upto 62\%. Furthermore, our proposed optimal shot allocation technique across different partitions reduces total error by up to 73\% compared to conventional approaches.
Cite
@article{arxiv.2607.24704,
title = {How Many Shots Does It Take? A Noise-Aware Quantum Resource Allocation Framework},
author = {Prateek P. Kulkarni and Sumit K. Mandal},
journal= {arXiv preprint arXiv:2607.24704},
year = {2026}
}
Comments
Accepted in ACM/IEEE International Symposium on Low Power Electronics and Design (ISLPED '26)