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Number of items: 15.

2020

Pankratova, Maryna, Vasylchenkova, Anastasiia, Derevyanko, Stanislav, Chichkov, Nikolai B. and Prilepsky, Jaroslaw E. (2020). Signal-Noise Interaction in Optical-Fiber Communication Systems Employing Nonlinear Frequency-Division Multiplexing. Physical Review Applied, 13 (5),

2019

Vasylchenkova, Anastasiia, Pankratova, Maryna, Prilepsky, Jaroslaw E., Chichkov, Nikolay B. and Turitsyn, Sergei K. (2019). Signal-dependent noise for b-modulation NFT-based transmission. IN: 2019 Conference on Lasers and Electro-Optics Europe and European Quantum Electronics Conference, CLEO/Europe-EQEC 2019. DEU: IEEE.

Kotlyar, Oleksandr, Kamalian Kopae, Morteza, Prilepsky, Jaroslaw E., Pankratova, Maryna and Turitsyn, Sergei K. (2019). Machine learning for performance improvement of periodic NFT-based communication system. IN: 2019 European Conference on Optical Communications. Royal Dublin Society, 2019-09-22 - 2019-09-26.

Pankratova, Maryna, Vasylchenkova, Anastasiia and Prilepsky, Jaroslaw E. (2019). Noise-induced signal corruption in nonlinear Fourier-based optical transmission system in the presence of discrete eigenvalues. IN: The International Conference on Optical Communication Systems. The Vienna House Diplomat Prague, 2019-07-26 - 2019-07-28.

Pankratova, Maryna, Vasylchenkova, Anastasiia, Prilepsky, Jaroslaw E. and Derevyanko, Stanislav A. (2019). Study of Noise-Induced Signal Corruption for Nonlinear Fourier-Based Optical Transmission. IN: 2018 British and Irish Conference on Optics and Photonics, BICOP 2018 - Proceedings. GBR: IEEE.

Kotlyar, Oleksandr, Pankratova, Maryna, Kamalian Kopae, Morteza, Vasylchenkova, Anastasiia, Prilepsky, Jaroslaw E. and Turitsyn, Sergei K. (2019). Unsupervised and supervised machine learning for performance improvement of NFT optical transmission. IN: 2018 British and Irish Conference on Optics and Photonics, BICOP 2018 - Proceedings. GBR: IEEE.

2018

Pankratova, M. L. and Kovalev, A. S. (2018). Exchange bias effect in antiferromagnets containing ferromagnetic clusters. Low Temperature Physics, 44 (11), pp. 1161-1167.

Pankratova, Maryna, Vasylchenkova, Anastasiia, Prilepsky, Jaroslaw E. and Derevyanko, Stanislav A. (2018). Properties of the effective noise in the nonlinear Fourier transform-based transmission. IN: Frontiers in Optics / Laser Science. Optical Society of America (OSA).

2017

Pankratova, M. and Žukovič, M. (2017). Magnetization curves of geometrically frustrated exchange-biased FM/AFM bilayers. Acta Physica Polonica A, 131 (4), pp. 642-644.

2015

Pankratova, M. L. and Kovalev, A. S. (2015). Model of exchange bias in a trilayer FM/AFM/FM structure. Low Temperature Physics, 41 (10), pp. 838-844.

2014

Kovalev, A. S. and Pankratova, M. L. (2014). Properties of ferromagnetic film hysteresis, on the surface of a hard-magnetic antiferromagnet, with a domain structure. Low Temperature Physics, 40 (11),

2012

Grechnev, A. G., Kovalev, A. S. and Pankratova, M. L. (2012). Influence of magnetic anisotropy on hysteresis behavior in the two-spin model of a ferro/antiferromagnet bilayer with exchange bias. Low Temperature Physics, 38 (10), pp. 937-942.

2011

Kovalev, A. S. and Pankratova, M. L. (2011). The magnetic structure of a thin ferromagnetic film on the rough surface of an antiferromagnet. Low Temperature Physics, 37 (10), pp. 866-871.

2009

Grechnev, A. G., Kovalev, A. S. and Pankratova, M. L. (2009). Field dependences of the magnetization and exchange bias in ferro/antiferromagnetic systems. II. Continuum model of a ferromagnetic layer. Low Temperature Physics, 35 (7), pp. 526-530.

Grechnev, A. G., Kovalev, A. S. and Pankratova, M. L. (2009). Magnetization field-dependences and the "exchange bias" in ferro/antiferromagnetic systems. I. Model of a bilayer ferromagnetic. Low Temperature Physics, 35 (6), pp. 476-483.

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