Tomographic entanglement indicators from NMR experiments
B. Sharmila, V. R. Krithika, Soham Pal, T. S. Mahesh, S. Lakshmibala, and V. Balakrishnan

TL;DR
This paper evaluates tomographic entanglement indicators derived from NMR experiments in spin systems, demonstrating their effectiveness in tracking entanglement dynamics and their advantage over traditional state reconstruction methods.
Contribution
It introduces and validates tomographic entanglement indicators for spin systems, comparing experimental data with standard measures and demonstrating their practical utility.
Findings
Indicators reproduce gross entanglement features
Sensitivity to interactions and partitioning
Indicators estimate entanglement without full state reconstruction
Abstract
In recent years, the performance of different entanglement indicators obtained directly from tomograms has been assessed in continuous-variable and hybrid quantum systems. In this paper, we carry out this task in the case of spin systems. We compute the entanglement indicators from actual experimental data obtained from three liquid-state NMR experiments, and compare them with standard entanglement measures calculated from the corresponding density matrices, both experimentally reconstructed and numerically computed. The gross features of entanglement dynamics and spin squeezing properties are found to be reproduced by these entanglement indicators. However, the extent to which these indicators and spin squeezing track the entanglement during time evolution of the multipartite systems in the NMR experiments is very sensitive to the precise nature and strength of interactions as well as…
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