Classical optimisation of reduced density matrix estimations with classical shadows using N-representability conditions under shot noise considerations

Fuente: arXiv
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Main Authors: Anselmetti, Gian-Luca R., Degroote, Matthias, Moll, Nikolaj, Santagati, Raffaele, Streif, Michael
Format: Preprint
Published: 2024
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_version_ 1866914108345942016
author Anselmetti, Gian-Luca R.
Degroote, Matthias
Moll, Nikolaj
Santagati, Raffaele
Streif, Michael
author_facet Anselmetti, Gian-Luca R.
Degroote, Matthias
Moll, Nikolaj
Santagati, Raffaele
Streif, Michael
contents Classical shadow tomography has become a powerful tool in learning about quantum states prepared on a quantum computer. Recent works have used classical shadows to variationally enforce N-representability conditions on the 2-particle reduced density matrix. In this paper, we build upon previous research by choice of an improved estimator within classical shadow tomography and rephrasing the optimisation constraints, resulting in an overall enhancement in performance under comparable measurement shot budgets. We further explore the specific regimes where these methods outperform the unbiased estimator of the standalone classical shadow protocol and quantify the potential savings in numerical studies.
format Preprint
id arxiv_https___arxiv_org_abs_2411_18430
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Classical optimisation of reduced density matrix estimations with classical shadows using N-representability conditions under shot noise considerations
Anselmetti, Gian-Luca R.
Degroote, Matthias
Moll, Nikolaj
Santagati, Raffaele
Streif, Michael
Quantum Physics
Classical shadow tomography has become a powerful tool in learning about quantum states prepared on a quantum computer. Recent works have used classical shadows to variationally enforce N-representability conditions on the 2-particle reduced density matrix. In this paper, we build upon previous research by choice of an improved estimator within classical shadow tomography and rephrasing the optimisation constraints, resulting in an overall enhancement in performance under comparable measurement shot budgets. We further explore the specific regimes where these methods outperform the unbiased estimator of the standalone classical shadow protocol and quantify the potential savings in numerical studies.
title Classical optimisation of reduced density matrix estimations with classical shadows using N-representability conditions under shot noise considerations
topic Quantum Physics
url https://arxiv.org/abs/2411.18430