150 citations to https://www.mathnet.ru/eng/natph1
-
Haowei Shi, Bingzhi Zhang, Jeffrey H. Shapiro, Zheshen Zhang, Quntao Zhuang, “Optimal entanglement-assisted electromagnetic sensing and communication in the presence of noise”, Phys. Rev. Applied, 21:3 (2024)
-
Andrew Tanggara, Ranjith Nair, Syed Assad, Varun Narasimhachar, Spyros Tserkis, Jayne Thompson, Ping Koy Lam, Mile Gu, “Quantum-optimal information encoding using noisy passive linear optics”, Quantum, 8 (2024), 1218
-
Marcin Jarzyna, Ludwig Kunz, Wojciech Zwoliński, Michał Jachura, Konrad Banaszek, “Photon information efficiency limits in deep-space optical communications”, Opt. Eng., 63:04 (2024)
-
Matteo Rosati, “The n-shot classical capacity of the quantum erasure channel”, J. Phys. Commun., 8:8 (2024), 085005
-
Zacharie Van Herstraeten, Saikat Guha, Nicolas J. Cerf, “Classical capacity of quantum non-Gaussian attenuator and amplifier channels”, Int. J. Quantum Inform., 22:05 (2024)
-
Giulio Chiribella, “Extreme quantum states and processes, and extreme points of general spectrahedra in finite dimensional algebras”, Int. J. Quantum Inform., 22:05 (2024)
-
Zuhra Amiri, Shahram Dehdashti, Kareem H. El-Safty, Igor Litvin, Pere Munar-Vallespir, Janis Nötzel, Simon Sekavčnik, “Quantum advantages for data transmission in future networks: An overview”, Computer Networks, 254 (2024), 110727
-
Pengcheng Liao, Quntao Zhuang, “Noisy entanglement testing for ranging and communication”, Phys. Rev. Applied, 22:2 (2024)
-
Karol Łukanowski, “Greedy receiver for photon-efficient optical communication”, Opt. Express, 32:22 (2024), 39831
-
Matteo Rosati, Albert Solana, “Joint-detection learning for optical communication at the quantum limit”, Optica Quantum, 2:6 (2024), 390