- Holger Boche, Gisbert Janßen, Stephan Kaltenstadler, “Entanglement-assisted classical capacities of compound and arbitrarily varying quantum channels”, Quantum Inf Process, 16, № 4, 2017, 88

- Janis Notzel, 2020 International Conference on Computer, Information and Telecommunication Systems (CITS), 2020, 1

- Hao-Chung Cheng, 2023 IEEE International Symposium on Information Theory (ISIT), 2023, 90

- Runyao Duan, Yaoyun Shi, “Entanglement between Two Uses of a Noisy Multipartite Quantum Channel Enables Perfect Transmission of Classical Information”, Phys. Rev. Lett., 101, № 2, 2008, 020501

- Charles H. Bennett, Igor Devetak, Aram W. Harrow, Peter W. Shor, Andreas Winter, “The Quantum Reverse Shannon Theorem and Resource Tradeoffs for Simulating Quantum Channels”, IEEE Trans. Inform. Theory, 60, № 5, 2014, 2926

- Shunlong Luo, Shuangshuang Fu, Nan Li, “Decorrelating capabilities of operations with application to decoherence”, Phys. Rev. A, 82, № 5, 2010, 052122

- Laszlo Gyongyosi, Sandor Imre, Hung Viet Nguyen, “A Survey on Quantum Channel Capacities”, IEEE Commun. Surv. Tutorials, 20, № 2, 2018, 1149

- Rochus Klesse, “A Random Coding Based Proof for the Quantum Coding Theorem”, Open Syst. Inf. Dyn., 15, № 01, 2008, 21

- A S Holevo, V Giovannetti, “Quantum channels and their entropic characteristics”, Rep. Prog. Phys., 75, № 4, 2012, 046001

- Rochus Klesse, “Approximate quantum error correction, random codes, and quantum channel capacity”, Phys. Rev. A, 75, № 6, 2007, 062315
