Single-shot energetic-based estimator for entanglement in a half-parity measurement setup
Abstract
Producing and certifying entanglement between distant qubits is a highly desirable skill for quantum information technologies. Here we propose a new strategy to monitor and characterize entanglement genesis in a half parity measurement setup, that relies on the continuous readout of an energetic observable which is the half-parity observable itself. Based on a quantum-trajectory approach, we theoretically analyze the statistics of energetic fluctuations for a pair of continuously monitored qubits. We quantitatively relate these energetic fluctuations to the rate of entanglement produced between the qubits, and build an energetic-based estimator to assess the presence of entanglement in the circuit. Remarkably, this estimator is valid at the single-trajectory level and shows to be robust against finite detection efficiency. Our work paves the road towards a fundamental understanding of the stochastic energetic processes associated with entanglement genesis, and opens new perspectives for witnessing quantum correlations thanks to quantum thermodynamic quantities.
Keywords
Cite
@article{arxiv.1807.02487,
title = {Single-shot energetic-based estimator for entanglement in a half-parity measurement setup},
author = {Cyril Elouard and Alexia Auffèves and Géraldine Haack},
journal= {arXiv preprint arXiv:1807.02487},
year = {2019}
}
Comments
10 pages, 4 figures. Finite detection efficiency analysis of the estimator added . Version to be published in Quantum