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Personal Docente e Investigador (P.D.I.)

Aliev Kazanski G., Farkhad

Aliev Kazanski G., Farkhad

+34 91 497 8596
+34 91 497 3961
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Resumen curriculum vitae

Farkhad Aliev received the M.S. and Ph.D degrees in physics from M. V. Lomonosov Moscow State University. He worked as a junior and then senior researcher at M. V. Lomonosov Moscow State University, visiting professor and research scientist with Universidad Autónoma de Madrid and Katholieke University Leuven. From 1999 he works at the Faculty of Science at UAM where he created a research group MAGNETRANS specialized in magnetization dynamics and noise in magnetic and superconducting nanostructures (experiments and simulations). During these years, he has been teaching several graduate and postgraduate courses including Thermodynamics and Statistical physics, Mathematical methods of Physics III and Spintronics. He created Lab. courses for the Grad and Master students on ferromagnetic resonance (experiment and simulations) and thermal electronic noise. He has been director of 11 PhD theses. He is a co-author of more than 150 scientific publications indexed in Web of Science and 4 patents. He has presented more than 50 invited talks at international conferences and co-organized four international Schools and Conferences. Actually, he serves as associated editor for Scientific Reports. He is author of two books: on Noise in spintronics (2018) and on Problems in mathematical physics - Fourier method (2020).


Grupos de Investigación

MAGNETRANS-UAM: Web de grupo

Web de grupo registrado por la UAM

Lineas de investigación
  • Current research interests are related with magnetization dynamics in magnetic and superconducting nanostructures (spin waves in confined conditions and nonlinear vortex dynamics in superconductors) and superconducting spintronics in epitaxial system with electron symmetry filtering and spin orbit interaction (noise and electron transport).
    Other recent experience includes noise in molecular spintronics and photoelectric properties of patterned ferromagnetic Metal-Oxide-Semiconductor nanostructures.

Áreas de especialización:

  • 2211 Física del estado sólido
  • 2211.17 Propiedades Magnéticas
  • 2202.11 Superconductividad


1. BOOK: Farkhad Aliev and Juan Pedro Cascales, “Noise in Spintronics: From Understanding to Manipulation” Ed. Pan Stanford / Taylor&Francis Group, (2018). [URL]

2. BOOK: Farkhad Aliev y Antonio Lara, “Problemas resueltos de métodos matemáticos de la Física: Método de Fourier” Ed. UAM EDICIONES (2020).

3. Superconductivity-induced change in magnetic anisotropy in epitaxial ferromagnet - superconductor hybrids with spin-orbit interaction, C. González-Ruano, L. G. Johnsen, D. Caso, C. Tiusan, M. Hehn, N. Banerjee, J. Linder, F. G. Aliev  Physical Review B (Rapid Comm.) 102, 020405(R) (2020) [URL]

4 Interfacial Spin-Orbit Coupling: A Platform for Superconducting Spintronics, I. Martínez, P. Högl, C. González-Ruano, J. P. Cascales, C. Tiusan, Y. Lu, M. Hehn, A. Matos-Abiague, J. Fabian, I. Žuti´c, F. G. Aliev, Physical Review Applied 13, p.014030 (2020). [URL]

5. Microwave-stimulated superconductivity due to presence of vortices, A. Lara, F. G. Aliev, A. V. Silhanek, V. V. Moshchalkov, Scientific Reports 5, 9187, (2015). [URL]

6. Controlling Shot Noise in Double-Barrier Magnetic Tunnel Junctions, J. P. Cascales, D. Herranz, F. G. Aliev, T. Szczepański, V. K. Dugaev, J. Barnaś, A. Duluard, M. Hehn, and C. Tiusan, Phys. Rev. Lett. 109, 066601, (2012). [URL]

7. Spin excitation frequencies in magnetostatically coupled arrays of vortex state circular Permalloy dots, A. Awad, G. R. Aranda, D. Dieleman, K. Y. Guslienko, G. N. Kakazei, B. A. Ivanov, and F. G. Aliev, Appl. Phys. Lett. 97, 132501, (2010). [URL]

8. Tunneling in Double Barrier Junctions with "Hot Spots", D. Herranz, F. G. Aliev, C. Tiusan, M. Hehn, V. K. Dugaev, and J. Barnaś, Phys. Rev. Lett. 105, 047207, (2010). [URL]

9. Spin waves in circular soft magnetic dots at the crossover between vortex and single domain state, Farkhad G. Aliev, Juan F. Sierra, Ahmad A. Awad, Gleb N. Kakazei, Dong-Soo Han, Sang-Koog Kim, Vitali Metlushko, Bojan Ilic, and Konstantin Y. Guslienko, Phys. Rev. B 79, 174433, (2009). [URL]

10. Shot Noise in Magnetic Tunnel Junctions: Evidence for Sequential Tunneling, R. Guerrero, F. G. Aliev, Y. Tserkovnyak, T. S. Santos, and J. S. Moodera, Phys. Rev. Lett. 97, 266602, (2006). [URL]

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