Zobrazeno 1 - 10
of 43
pro vyhledávání: '"P. O Kapralov"'
Autor:
A.A. Amoscato, T. Anthonymuthu, O. Kapralov, L.J. Sparvero, I.H. Shrivastava, K. Mikulska-Ruminska, V.A. Tyurin, A.A. Shvedova, Y.Y. Tyurina, I. Bahar, S. Wenzel, H. Bayir, V.E. Kagan
Publikováno v:
Redox Biology, Vol 63, Iss , Pp 102758- (2023)
Ferroptosis is an iron dependent form of cell death, that is triggered by the discoordination of iron, lipids, and thiols. Its unique signature that distinguishes it from other forms of cell death is the formation and accumulation of lipid hydroperox
Externí odkaz:
https://doaj.org/article/b6c53dfd10404dbaac5f4f9aaaeab763
Autor:
Haider H. Dar, Tamil S. Anthonymuthu, Liubov A. Ponomareva, Austin B. Souryavong, Galina V. Shurin, Alexandr O. Kapralov, Vladimir A. Tyurin, Janet S. Lee, Rama K. Mallampalli, Sally E. Wenzel, Hülya Bayir, Valerian E. Kagan
Publikováno v:
Redox Biology, Vol 45, Iss , Pp 102045- (2021)
Ferroptosis is a redox-driven type of regulated cell death program arising from maladaptation of three metabolic pathways: glutathione homeostasis, iron handling and lipid peroxidation. Though GSH/Gpx4 is the predominant system detoxifying phospholip
Externí odkaz:
https://doaj.org/article/e3f67850337e451888b65ee03ea99b6a
Autor:
D. O. Ignatyeva, C. S. Davies, D. A. Sylgacheva, A. Tsukamoto, H. Yoshikawa, P. O. Kapralov, A. Kirilyuk, V. I. Belotelov, A. V. Kimel
Publikováno v:
Nature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
The density of magnetic storage media is limited by the superparamagnetic limit when scaling down magnetic bits. Here, the authors open the way for stacked magnetic storage by using all-optical switching and addressing different magnetic layers by po
Externí odkaz:
https://doaj.org/article/e61710dea99b4360b15d312b5a44b186
Autor:
Daria O. Ignatyeva, Pavel O. Kapralov, Kiran Horabail Prabhakara, Hiroki Yoshikawa, Arata Tsukamoto, Vladimir I. Belotelov
Publikováno v:
Molecules, Vol 26, Iss 21, p 6406 (2021)
Ferrimagnetic rare-earth substituted metal alloys GdFeCo were shown to exhibit the phenomenon of all-optical magnetization switching via femtosecond laser pulses. All-optical magnetization switching has been comprehensively investigated in out-of-pla
Externí odkaz:
https://doaj.org/article/481d36fe6ab244818573ade2a30eb2d1
Autor:
M. A. Yavorsky, M. A. Kozhaev, A. Yu. Fedorov, D. V. Vikulin, E. V. Barshak, V. N. Berzhansky, S. D. Lyashko, P. O. Kapralov, V. I. Belotelov
Publikováno v:
Physical Review Letters. 130
Autor:
Daria O. Ignatyeva, A. K. Zvezdin, Sergey K. Sekatskii, P. V. Shilina, Kamal Alameh, Seyedeh Mehri Hamidi, Yongchao Song, Venu Gopal Achanta, P. O. Kapralov, Vladimir I. Belotelov, Mikhail Vasiliev, Mohammad Nur-E-Alam
Publikováno v:
Nanoscale. 13:5791-5799
We propose a novel type of photonic-crystal (PC)-based nanostructures for efficient and tunable optically-induced spin current generation via the spin Seebeck and inverse spin Hall effects. It has been experimentally demonstrated that optical surface
Publikováno v:
Doklady Physics. 66:153-155
Autor:
P. E Petrov, P. O Kapralov, G. A Knyazev, A. N Kuzmichev, P. M Vetoshko, Yu. M Bunkov, V. I Belotelov
Publikováno v:
Optics express. 30(2)
The explosive development of quantum magnonics is associated with the possibility of its use as macroscopic quantum systems. In particular, they can find an application for quantum computing processors and other devices. The recently discovered pheno
Autor:
P. E. Petrov, P. O. Kapralov, G. A. Knyazev, A. N. Kuzmichev, P. M. Vetoshko, V. I. Belotelov, Yu. M. Bunkov
Publikováno v:
Optics Express. 31:8335
Magnons have demonstrated enormous potential for the next generation of information technology and quantum computing. In particular, the coherent state of magnons resulting from their Bose-Einstein condensation (mBEC) is of great interest. Typically,
Autor:
Vladimir I. Belotelov, D.A. Sylgacheva, Hiroki Yoshikawa, Daria O. Ignatyeva, C. S. Davies, Alexey Kimel, Andrei Kirilyuk, Arata Tsukamoto, P. O. Kapralov
Publikováno v:
Nature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
Nature Communications
Nature Communications, 10
Nature Communications
Nature Communications, 10
All-optical magnetization reversal with femtosecond laser pulses facilitates the fastest and least dissipative magnetic recording, but writing magnetic bits with spatial resolution better than the wavelength of light has so far been seen as a major c