• Opto-Electronic Advances
  • Vol. 3, Issue 1, 190027-1 (2020)
Philipp Graus1、*, Thomas B. Möller1, Paul Leiderer1, Johannes Boneberg1, and Nikolay I. Polushkin2
Author Affiliations
  • 1Department of Physics, University of Konstanz, 78457 Konstanz, Germany
  • 2Institute for Physics of Microstructures of RAS, 603950 GSP-105 Nizhny Novgorod, Russian
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    DOI: 10.29026/oea.2020.190027 Cite this Article
    Philipp Graus, Thomas B. Möller, Paul Leiderer, Johannes Boneberg, Nikolay I. Polushkin. Direct laser interference patterning of nonvolatile magnetic nanostructures in Fe60Al40 alloy via disorder-induced ferromagnetism[J]. Opto-Electronic Advances, 2020, 3(1): 190027-1 Copy Citation Text show less
    References

    [1] F C Nix, W Shockley. Order-disorder transformations in alloys. Rev Mod Phys, 10, 1-71(1938).

    [2] H E Cook, D de Fontaine, J E Hilliard. A model for diffusion on cubic lattices and its application to the early stages of ordering. Acta Metall, 17, 765-773(1969).

    [3] H Metiu, K Kitahara, J Ross. Stochastic theory of the kinetics of phase transitions. J Chem Phys, 64, 292-299(1976).

    [4] A G Khachaturyan. Ordering in substitutional and interstitial solid solutions. Prog Mater Sci, 22, 1-150(1978).

    [5] G Martin. Relaxation rate of conserved and nonconserved order parameters in replacive transitions. Phys Rev B, 50, 12362-12366(1994).

    [6] J Ye, P Bellon. Nanoscale patterning of chemical order induced by displacement cascades in irradiated alloys. Phys Rev B, 70, 094104(2004).

    [7] H Mehrer, M Eggersmann, A Gude, M Salamon, B Sepiol. Diffusion in intermetallic phases of the Fe-Al and Fe-Si Systems. Mater Sci Eng: A, 239-240, 889-898(1997).

    [8] M Eggersmann, H Mehrer. Diffusion in intermetallic phases of the Fe-Al system. Philos Mag A, 80, 1219-1244(2000).

    [9] R Würschum, C Grupp, H E Schaefer. Simultaneous study of vacancy formation and migration at high temperatures in B2-type Fe aluminides. Phys Rev Lett, 75, 97-100(1995).

    [10] M Stana, B Sepiol, R Kozubski, M Leitner. Chemical ordering beyond the superstructure in long-range ordered systems. New J Phys, 18, 113051(2016).

    [11] G P Huffman, R M Fisher. Mössbauer studies of ordered and cold-worked Fe-Al alloys containing 30 to 50 at. % aluminum. J Appl Phys, 38, 735(1967).

    [12] P A Beck. Some recent results on magnetism in alloys. Metall Mater Trans B, 2, 2015-2024(1971).

    [13] A Hernando, X Amils, J Nogués, S Surinãch, M D Baró et al. Influence of magnetization on the reordering of nanostructured ball-milled Fe-40 at. % Al powders. Phys Rev B, 58, R118649(R)(1998).

    [14] E Menéndez, J Sort, M O Liedke, J Fassbender, S Suriñach et al. Two-fold origin of the deformation-induced ferromagnetism in bulk Fe60Al40 (at.%) alloys. New J Phys, 10, 103030(2008).

    [15] L E Zamora, G A P Alcázar, G Y Vélez, J D Betancur, J F Marco et al. Disorder effect on the magnetic behavior of mechanically alloyed Fe1-x Alx (0.2≤x≤0.4). Phys Rev B, 79, 094418(2009).

    [16] Y Murakami, K Niitsu, T Tanigaki, R Kainuma, H S Park et al. Magnetization amplified by structural disorder within nanometre scale interface region. Nat Commun, 5, 4133(2014).

    [17] R Bali, S Wintz, F Meutzner, R Hübner, R Boucher et al. Printing nearly-discrete magnetic patterns using chemical disorder induced ferromagnetism. Nano Lett, 14, 435-441(2014).

    [18] N I Polushkin, V Oliveira, R Vilar, M He, M V Shugaev et al. Phase- change magnetic memory: Rewritable ferromagnetism by laser quenching of chemical disorder in Fe60Al40 alloy. Phys Rev Appl, 10, 024023(2018).

    [19] Y Yoshida, K Oosawa, S Watanabe, H Kaiju, K Kondo et al. Nanopatterns induced by pulsed laser irradiation on the surface of an Fe-Al alloy and their magnetic properties. Appl Phys Lett, 102, 183109(2013).

    [20] J Ehrler, M He, M V Shugaev, N I Polushkin, S Wintz et al. Laser-rewriteable ferromagnetism at thin-film surfaces. ACS Appl Mater Interfaces, 10, 15232-15239(2018).

    [21] E Apiñaniz, F Plazaola, J S Garitaonandia. Electronic structure calculations of Fe-rich ordered and disordered Fe-Al alloys. Eur Phys J B, 31, 167-177(2003).

    [22] Plazaola F, Apiñaniz E, Rodriguez D M, Legarra E, Garitaonandia J S. Fe-Al alloys' magnetism. In Advanced Magnetic Materials, Ed. by Malkinski L, University of New Orleans, USA, 2002.

    [23] N I Kulikov, A V Postnikov, G Borstel, J Braun. Onset of magnetism in B2 transition-metal aluminides. Phys Rev B, 59, 6824-6833(1999).

    [24] A V Smirnov, W A Shelton, D D Johnson. Importance of thermal disorder on the properties of alloys: origin of paramagnetism and structural anomalies in bcc-based Fe1-xAlx. Phys Rev B, 71, 064408(2005).

    [25] M Palm, F Stein, G Dehm. Iron aluminides. Annu Rev Mater Res, 49, 297-326(2019).

    [26] L Müller-Meskamp, Y H Kim, T Roch, S Hofmann, R Scholz et al. Efficiency enhancement of organic solar cells by fabricating periodic surface textures using direct laser interference patterning. Adv Mater, 24, 906-910(2012).

    [27] C Daniel, F Mücklich, Z Liu. Periodical micro-nano-structuring of metallic surfaces by interfering laser beams. Appl Surf Sci, 208-209, 317-321(2003).

    [28] M Zheng, M Yu, Y Liu, R Skomski, S H Liou et al. Magnetic nanodot arrays produced by direct laser interference lithography. Appl Phys Lett, 79, 2606-2608(2001).

    [29] M Stärk, F Schlickeiser, D Nissen, B Hebler, P Graus et al. Controlling the magnetic structure of Co/Pd thin films by direct laser interference patterning. Nanotechnology, 26, 205302(2015).

    [30] I Martín-Fabiani, S Riedel, D R Rueda, J Siegel, J Boneberg et al. Micro- and submicrostructuring thin polymer films with two and three-beam single pulse laser interference lithography. Langmuir, 30, 8973-8979(2014).

    [31] C S Davies, J Januŝonis, A V Kimel, A Kirilyuk, A Tsukamoto et al. Towards massively parallelized all-optical magnetic recording. J Appl Phys, 123, 213904(2018).

    [32] J Timmerwilke, S H Liou, S F Cheng, A S Edelstein. Rewriting magnetic phase change memory by laser heating. J Phys D: Appl Phys, 49, 165005(2016).

    [33] D P Wang, Z B Wang, Z A Zhang, Y Yue, D Y Li et al. Effects of polarization on four-beam laser interference lithography. Appl Phys Lett, 102, 081903(2013).

    [34] Bischof J. Metallische dünnfilmschmelzen nach pulslaser-bestrahlung: phasenumwandlungen und Instabilitäten (Konstanz, Univ, Diss, 1997).

    [35] A Rudajevová, J Buriánek. Determination of thermal diffusivity and thermal conductivity of Fe-Al Alloys in the concentration range 22 to 50 at.% Al. J Phase Equilib, 22, 560-563(2001).

    [36] D Chanbi, E Ogam, S E Amara, Z E A Fellah. Synthesis and mechanical characterization of binary and ternary intermetallic alloys based on Fe-Ti-Al by resonant ultrasound vibrational methods. Materials, 11, 746(2018).

    [37] J Piatkowski, R Przeliorz, M Jablonska. The specific heat capacity and oxidation kinetics of NiAl, FeAl and TiAl alloys. Solid State Phenom, 203-204, 431-434(2013).

    [38] A A Bukharaev, D V Ovchinnikov, N I Nurgazizov, E F Kukovitskiĭ, M Klaĭber et al. Investigation of micromagnetism and magnetic reversal of Ni nanoparticles using a magnetic force microscope. Phys Solid State, 40, 1163-1168(1998).

    [39] A M Alekseev, V A Bykov, A F Popkov, N I Polushkin, V I Korneev. Observation of remanent states of small magnetic particles: Micromagnetic simulation and experiment. J Exp Theor Phys Lett, 75, 268-272(2002).

    [40] X B Zhu, P Grutter. Magnetic force microscopy studies of patterned magnetic structures. IEEE Trans Magn, 39, 3420-3425(2003).

    [41] W Zhang, R Singh, N Bray-Ali, S Haas. Scaling analysis and application: phase diagram of magnetic nanorings and elliptical nanoparticles. Phys Rev B, 77, 144428(2008).

    [42] J Chang, V L Mironov, B A Gribkov, A A Fraerman, S A Gusev et al. Magnetic state control of ferromagnetic nanodots by magnetic force microscopy probe. J Appl Phys, 100, 104304(2006).

    [43] J S Wei, X B Jiao, F X Gan, M F Xiao. Laser pulse induced bumps in chalcogenide phase change films. J Appl Phys, 103, 124516(2008).

    [44] F Stein, M Palm. Re-determination of transition temperatures in the Fe-Al system by differential thermal analysis. Int J Mater Res, 98, 580-588(2007).

    Philipp Graus, Thomas B. Möller, Paul Leiderer, Johannes Boneberg, Nikolay I. Polushkin. Direct laser interference patterning of nonvolatile magnetic nanostructures in Fe60Al40 alloy via disorder-induced ferromagnetism[J]. Opto-Electronic Advances, 2020, 3(1): 190027-1
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