English

Fewer measurements from shadow tomography with $N$-representability conditions

Quantum Physics 2023-12-20 v1 Chemical Physics Computational Physics

Abstract

Classical shadow tomography provides a randomized scheme for approximating the quantum state and its properties at reduced computational cost with applications in quantum computing. In this Letter we present an algorithm for realizing fewer measurements in the shadow tomography of many-body systems by imposing NN-representability constraints. Accelerated tomography of the two-body reduced density matrix (2-RDM) is achieved by combining classical shadows with necessary constraints for the 2-RDM to represent an NN-body system, known as NN-representability conditions. We compute the ground-state energies and 2-RDMs of hydrogen chains and the N2_{2} dissociation curve. Results demonstrate a significant reduction in the number of measurements with important applications to quantum many-body simulations on near-term quantum devices.

Keywords

Cite

@article{arxiv.2312.11715,
  title  = {Fewer measurements from shadow tomography with $N$-representability conditions},
  author = {Irma Avdic and David A. Mazziotti},
  journal= {arXiv preprint arXiv:2312.11715},
  year   = {2023}
}