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— 1999. — Vol. 86, no. 12. — Pp. 6763–6769.[258] Rauscher M., Salditt T., Spohn H. Small-angle x-ray scattering undergrazing incidence: The cross section in the distorted-wave Bornapproximation // Physical review B. — 1995. — Vol. 52, no. 23. —P. 16855.[259] Hexemer A., Müller-Buschbaum P. Advanced grazing-incidencetechniques for modern soft-matter materials analysis // IUCrJ. —2015.
— Vol. 2, no. 1. — Pp. 106–125.[260] Huber P., Bunk O., Pietsch U. et al.; Grazing incidence small angle xray scattering on colloidal crystals // The Journal of Physical ChemistryB. — 2010. — Vol. 114, no. 39. — Pp. 12473–12479.[261] Sinha S., Sirota E., Garoff S., Stanley H.; X-ray and neutron scatteringfrom rough surfaces // Physical Review B. — 1988. — Vol.
38, no. 4. —P. 2297.150[262] Renaud G., Lazzari R., Leroy F. Probing surface and interfacemorphology with grazing incidence small angle X-ray scattering //Surface Science Reports. — 2009. — Vol. 64, no. 8. — Pp. 255–380.[263] Lazzari R. IsGISAXS: a program for grazing-incidence small-angle Xray scattering analysis of supported islands // Journal of AppliedCrystallography. — 2002.
— Vol. 35, no. 4. — Pp. 406–421.[264] Squires G. L. Introduction to the theory of thermal neutron scattering. —Cambridge university press, 2012.[265] Grillo I. Small-angle neutron scattering and applications in softcondensed matter // Soft matter characterization. — Springer, 2008. —Pp.
723–782.[266] Grigoriev S., Syromyatnikov A., Chumakov A. et al.; Nanostructures:Scattering beyond the Born approximation // Physical Review B. —2010. — Vol. 81, no. 12. — P. 125405.[267] Michels A. Magnetic small-angle neutron scattering of bulkferromagnets // Journal of Physics: Condensed Matter. — 2014. —Vol. 26, no. 38. — P. 383201.[268] Jiles D. Introduction to magnetism and magnetic materials. — CRC press,2015.[269] Hartmann U. Magnetic force microscopy // Annual review of materialsscience.
— 1999. — Vol. 29, no. 1. — Pp. 53–87.[270] Ciuta G., Dumas-Bouchiat F., Dempsey N. M., Fruchart O.; Someaspects of Magnetic Force Microscopy of hard magnetic films // IEEETransactions on Magnetics. — 2016. — Vol. 52, no. 9. — Pp. 1–8.[271] Serri M., Mannini M., Poggini L. et al.; Low-temperature magneticforce microscopy on single molecule magnet-based microarrays // Nanoletters. — 2017. — Vol. 17, no. 3. — Pp. 1899–1905.151[272] Bertotti G.
Hysteresis in magnetism: for physicists, materials scientists,and engineers. — Academic press, 1998.[273] Akhiezer A. I., Peletminskii S., Baryakhtar V. G. Spin waves. — 1968.[274] Gilbert T. L. A phenomenological theory of damping in ferromagneticmaterials // IEEE Transactions on Magnetics. — 2004.
— Vol. 40, no. 6. —Pp. 3443–3449.[275] Podio-Guidugli P. On dissipation mechanisms in micromagnetics // TheEuropean Physical Journal B-Condensed Matter and Complex Systems. —2001. — Vol. 19, no. 3. — Pp. 417–424.[276] Kikuchi R. On the minimum of magnetization reversal time // Journalof Applied Physics. — 1956. — Vol. 27, no. 11. — Pp. 1352–1357.[277] Mallinson J. On damped gyromagnetic precession // IEEE Transactionson Magnetics. — 1987. — Vol. 23, no.
4. — Pp. 2003–2004.[278] Kim S.-K. Micromagnetic computer simulations of spin waves innanometre-scale patterned magnetic elements // Journal of Physics D:Applied Physics. — 2010. — Vol. 43, no. 26. — P. 264004.[279] Fidler J., Schrefl T. Micromagnetic modelling-the current state of theart // Journal of Physics D: Applied Physics.
— 2000. — Vol. 33, no. 15. —P. R135.[280] Schrefl T. Finite elements in numerical micromagnetics: Part ii: patternedmagnetic elements // Journal of magnetism and magnetic materials. —1999. — Vol. 207, no. 1-3. — Pp. 66–77.[281] Fischbacher T., Franchin M., Bordignon G., Fangohr H.; Asystematic approach to multiphysics extensions of finite-element-basedmicromagnetic simulations: Nmag // IEEE Transactions on Magnetics.
—2007. — Vol. 43, no. 6. — Pp. 2896–2898.152[282] Fredkin D., Koehler T. Hybrid method for computing demagnetizingfields // IEEE Transactions on Magnetics. — 1990. — Vol. 26, no. 2. —Pp. 415–417.[283] Hackbusch W. A Sparse Matrix Arithmetic Based on H-Matrices. PartI: Introduction to H-Matrices // Computing. — 1999. — Vol. 62, no. 2. —Pp. 89–108.[284] Han X., Liu Q., Wang J. et al.; Influence of crystal orientation onmagnetic properties of hcp Co nanowire arrays // Journal of PhysicsD: Applied Physics.
— 2009. — Vol. 42, no. 9. — P. 095005.[285] Yan M., Leaf G., Kaper H. et al.; Dynamic origin of stripe domains incobalt bars // Journal of Magnetism and Magnetic Materials. — 2007. —Vol. 310, no. 2. — Pp. 1596–1598.[286] Donahue M., McMichael R. Exchange energy representations incomputational micromagnetics // Physica B: Condensed Matter. —1997. — Vol. 233, no. 4. — Pp. 272–278.[287] Busch K., John S.
Photonic band gap formation in certain self-organizingsystems // Physical Review E. — 1998. — Vol. 58, no. 3. — P. 3896.[288] Yu X., Lee Y.-J., Furstenberg R. et al.; Filling fraction dependentproperties of inverse opal metallic photonic crystals // AdvancedMaterials. — 2007. — Vol. 19, no. 13. — Pp. 1689–1692.[289] Fukazawa H., Melko R., Higashinaka R. et al.; Magnetic anisotropy ofthe spin-ice compound Dy 2 Ti 2 O 7 // Physical Review B. — 2002. —Vol.
65, no. 5. — P. 054410.[290] Fangohr H., Bordignon G., Franchin M. et al.; A new approach to (quasi)periodic boundary conditions in micromagnetics: The macrogeometry //Journal of Applied Physics. — 2009. — Vol. 105, no. 7. — P. 07D529.[291] Guinier A. X-ray Diffraction in Crystals, Imperfect Crystals, and153Amorphous Bodies. Dover Books on Physics Series. — Dover Publications,1994.[292] Kim J., Cho S.-G., Choa Y.-h.
et al.; Microstructures and thecorresponding magnetic properties of antidot arrays // Thin SolidFilms. — 2012. — Vol. 520, no. 7. — Pp. 3013–3016.[293] Hubert A., Rave W., Tomlinson S. L. Imaging magnetic charges withmagnetic force microscopy // physica status solidi (b). — 1997. — Vol.204, no. 2. — Pp. 817–828..















