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Fidelity and Entanglement of Random Bipartite Pure States: Insights and Applications

Published 3 Aug 2023 in quant-ph | (2308.01714v3)

Abstract: We investigate the fidelity of Haar random bipartite pure states from a fixed reference quantum state and their bipartite entanglement. By plotting the fidelity and entanglement on perpendicular axes, we observe that the resulting plots exhibit non-uniform distributions. The distribution depends on the entanglement of the fixed reference quantum state used to quantify the fidelity of the random pure bipartite states. We find that the average fidelity of typical random pure bipartite qubits within a narrow entanglement range with respect to a randomly chosen fixed bipartite qubit is $\frac{1}{4}$. Extending our study to higher dimensional bipartite qudits, we find that the average fidelity of typical random pure bipartite qudits with respect to a randomly chosen fixed bipartite qudit remains constant within a narrow entanglement range. The values of these constants are (\frac{1}{d2}), with d being the dimension of the local Hilbert space of the bipartite qudit system, suggesting a consistent relationship between entanglement and fidelity across different dimensions. The probability distribution functions of fidelity with respect to a product state are analytically studied and used as a reference for the benchmarking of distributed quantum computing devices.

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References (15)
  1. I. Bengtsson and K. Zyczkowski, Geometry of Quantum States: An Introduction to Quantum Entanglement (Cambridge University Press, 2006).
  2. D. Cohn, Measure Theory: Second Edition (Springer New York, 2013).
  3. J. A. Miszczak, Generating and using truly random quantum states in mathematica, Computer Physics Communications 183, 118 (2012).
  4. M. Enríquez, F. Delgado, and K. Życzkowski, Entanglement of three-qubit random pure states, Entropy 20, 10.3390/e20100745 (2018).
  5. U. Singh, L. Zhang, and A. K. Pati, Average coherence and its typicality for random pure states, Phys. Rev. A 93, 032125 (2016).
  6. K. Zyczkowski and H.-J. Sommers, Induced measures in the space of mixed quantum states, Journal of Physics A: Mathematical and General 34, 7111 (2001).
  7. G. Biswas, A. Biswas, and U. Sen, Inhibition of spread of typical bipartite and genuine multiparty entanglement in response to disorder, New Journal of Physics 23, 113042 (2021).
  8. H. Yuan and C.-H. F. Fung, Fidelity and fisher information on quantum channels, New Journal of Physics 19, 113039 (2017).
  9. C. A. Fuchs and C. M. Caves, Ensemble-dependent bounds for accessible information in quantum mechanics, Phys. Rev. Lett. 73, 3047 (1994).
  10. A. Winter, On the fidelity of two pure states, Journal of Physics A: Mathematical and General 34, 7095 (2001).
  11. J. Li, R. Pereira, and S. Plosker, Some geometric interpretations of quantum fidelity, Linear Algebra and its Applications 487, 158 (2015).
  12. R. Jozsa, Fidelity for mixed quantum states, Journal of Modern Optics 41, 2315 (1994).
  13. K. Życzkowski and H.-J. Sommers, Average fidelity between random quantum states, Phys. Rev. A 71, 032313 (2005).
  14. D. Cuomo, M. Caleffi, and A. S. Cacciapuoti, Towards a distributed quantum computing ecosystem, IET Quantum Communication 1, 3 (2020), https://ietresearch.onlinelibrary.wiley.com/doi/pdf/10.1049/iet-qtc.2020.0002 .
  15. J. Lin, Divergence measures based on the shannon entropy, IEEE Transactions on Information Theory 37, 145 (1991).

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