21 citations to 10.1063/1.3589831 (Crossref Cited-By Service)
  1. M E Shirokov, “Quantifying continuity of characteristics of composite quantum systems”, Phys. Scr., 98, no. 4, 2023, 042002  crossref
  2. M. E. Shirokov, “Correlation measures of a quantum state and information characteristics of a quantum channel”, Journal of Mathematical Physics, 64, no. 11, 2023, 112201  crossref
  3. Touheed Anwar Atif, Mohsen Heidari, S. Sandeep Pradhan, “Faithful Simulation of Distributed Quantum Measurements With Applications in Distributed Rate-Distortion Theory”, IEEE Trans. Inform. Theory, 68, no. 2, 2022, 1085  crossref
  4. A. A. Kuznetsova, A. S. Holevo, “Coding Theorems for Hybrid Channels. II”, Theory Probab. Appl., 59, no. 1, 2015, 145  crossref
  5. Touheed Anwar Atif, Arun Padakandla, S. Sandeep Pradhan, “Source Coding for Synthesizing Correlated Randomness”, IEEE Trans. Inform. Theory, 69, no. 1, 2023, 626  crossref
  6. A. S. Holevo, V. I. Yashin, “Maximum information gain of approximate quantum position measurement”, Quantum Inf Process, 20, no. 3, 2021, 97  crossref
  7. Mario Berta, Joseph M. Renes, Mark M. Wilde, “Identifying the Information Gain of a Quantum Measurement”, IEEE Trans. Inform. Theory, 60, no. 12, 2014, 7987  crossref
  8. Wen-jing Li, Liang Tang, Qun Zhang, Ming-qiang Bai, “Information gain and systems entanglement in tripartite measurement model”, Quantum Inf Process, 20, no. 1, 2021, 38  crossref
  9. G. G. Amosov, “On quantum channels generated by covariant positive operator-valued measures on a locally compact group”, Quantum Inf Process, 21, no. 9, 2022, 312  crossref
  10. A. A. Kuznetsova, “On the Proof of the Entanglement-assisted Coding Theorem for a Quantum Measurement Channel”, Lobachevskii J Math, 42, no. 10, 2021, 2377  crossref
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