173 citations to https://www.mathnet.ru/eng/qst1
  1. Ahmed A. Abd EL-Latif, Bassem Abd-El-Atty, Salvador E. Venegas-Andraca, Wojciech Mazurczyk, “Efficient quantum-based security protocols for information sharing and data protection in 5G networks”, Future Generation Computer Systems, 100 (2019), 893  crossref
  2. Laszlo Gyongyosi, Sandor Imre, “Secret key rates of free‐space optical continuous‐variable quantum key distribution”, Int J Communication, 32:18 (2019)  crossref
  3. Xin Sun, Mirek Sopek, Quanlong Wang, Piotr Kulicki, “Towards Quantum-Secured Permissioned Blockchain: Signature, Consensus, and Logic”, Entropy, 21:9 (2019), 887  crossref
  4. Laszlo Gyongyosi, Sandor Imre, “Gaussian quadrature inference for multicarrier continuous-variable quantum key distribution”, Quantum Stud.: Math. Found., 6:4 (2019), 397  crossref
  5. Deng, Huang, Cheng, “FinTech and Sustainable Development: Evidence from China based on P2P Data”, Sustainability, 11:22 (2019), 6434  crossref
  6. Manuel Pedro Rodríguez Bolívar, Hans Jochen Scholl, Rodríguez Bolívar, H.J. Scholl, “Mapping potential impact areas of Blockchain use in the public sector”, IP, 24:4 (2019), 359  crossref
  7. Jorge Bernal Bernabe, Jose Luis Canovas, Jose L. Hernandez-Ramos, Rafael Torres Moreno, Antonio Skarmeta, “Privacy-Preserving Solutions for Blockchain: Review and Challenges”, IEEE Access, 7 (2019), 164908  crossref
  8. Del Rajan, Matt Visser, “Quantum Blockchain Using Entanglement in Time”, Quantum Reports, 1:1 (2019), 3  crossref
  9. Laszlo Gyongyosi, Sandor Imre, “Multiple access multicarrier continuous-variable quantum key distribution”, Chaos, Solitons & Fractals, 114 (2018), 491  crossref
  10. Fabian Bocart, “Inflation Propensity of Collatz Orbits: A New Proof-of-Work for Blockchain Applications”, JRFM, 11:4 (2018), 83  crossref
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