3 Collective Magnetic Behaviour
83
arrangements of the particles and orientational dependence of the magnetic interaction [43]. The organization of the particles results in the formation of threedimensional structures, such as helices [44], superlattices [45], and other nanostructures [46] and mesoscopic systems [47, 48]. Systems built on spatial structural
order provide possibilities of ordered magnetic structures. The fabrication and study
of superferromagnets, superferrimagnets and superantiferromagnets provide a challenging field of collective experimental magnetism promoted by the possibility of
3D printing on the mesoscale [49].
Acknowledgements The authors are grateful to all their co-workers. This chapter includes results
obtained in collaboration with M. S. Andersson, G. Muscas, P. Anil Kumar, M. Hudl, as well as D.
Peddis, G. Singh, J. A. de Toro and their respective groups. The Swedish Research Council (VR)
is thanked for financial support.
References
1. P. Jönsson, Adv. Chem. Phys. 128, 191–248 (2004)
2. S. Bedanta, W. Kleemann, J. Phys. D Appl. Phys. 42, 013001 (2009)
3. S. Mörup, M.F. Hansen, C. Frandsen, Beilstein J. Nanotechnol. 1, 182–190 (2010)
4. S. Bedanta, O. Petracic, W. Kleemann, Supermagnetism in Handbook of Magnetic Materials
23, ed. by K. H. J. Buschow (Elsevier, 2017), pp. 1–83
5. D.S. Schmool, H. Kachkachi, Collective effects in assemblies of magnetic nanoparticles. in
Solid State Physics 67, ed. by R.E. Camley, R.L. Stamps (Academic Press, 2016), pp. 1–97
6. J.A. De Toro, S.S. Lee, D. Salazar, J.L. Cheong, P.S. Normile, P. Muniz, J.M. Riveiro, M.
Hillenkamp, F. Tournus, A. Tamion, P. Nordblad, Appl. Phys. Lett. 102, 183104 (2013)
7. D.L. Leslie-Pelecki, R.D. Rieke, Chem. Mater. 8, 1770 (1996)
8. M.S. Andersson, J.A. De Toro, S.S. Lee, P.S. Normile, P. Nordblad, R. Mathieu, Phys. Rev. B
93, 054407 (2016)
9. K. Binder, A.P. Young, Rev. Mod. Phys. 58, 801 (1986)
10. M.F. Hansen, P.E. Jönsson, P. Nordblad, P. Svedlindh, J. Phys. Condens. Matter 14, 4901–4914
(2002)
11. C. Djurberg, P. Svedlindh, P. Nordblad, M.F. Hansen, F. Bödker, S. Mörup, Phys. Rev. Lett.
79, 5154–5157 (1997)
12. J.L. Dormann, R. Cherkaoui, L. Spinu, M. Nogues, F. Lucari, F. D’Orazio, D. Fiorani, A.
Garcia, E. Tronc, J.P. Jolivet, J. Magn. Magn. Mater. 187, L139–L144 (1998)
13. K. Hiroi, K. Komatsu, T. Sato, Phys. Rev. B 83, 224423 (2011)
14. M.S. Andersson, R. Mathieu, P.S. Normile, S.S. Lee, G. Singh, P. Nordblad, J.A. De Toro,
Mater. Res. Express 3, 045015 (2016)
15. T. Jonsson, J. Mattsson, C. Djurberg, F.A. Khan, P. Nordblad, P. Svedlindh, Phys. Rev. Lett.
75, 4138 (1995)
16. R. Mathieu, M. Hudl, P. Nordblad, Europhys. Lett. 90, 67003 (2010)
17. R. Mathieu, P. Jönsson, D.N.H. Nam, P. Nordblad, Phys. Rev. B 63, 092401 (2001)
18. P.E. Jönsson, R. Mathieu, P. Nordblad, H. Yoshino, H. Aruga Katori, A. Ito, Phys. Rev. B 70,
174402 (2004)
19. M.S. Andersson, R. Mathieu, P.S. Normile, S.S. Lee, G. Singh, P. Nordblad, J.A. De Toro,
Phys. Rev. B 95, 184431 (2017)
20. P.S. Normile, M.S. Andersson, R. Mathieu, S.S. Lee, G. Singh, J.A. De Toro, Appl. Phys. Lett.
109, 152404 (2016)
83
arrangements of the particles and orientational dependence of the magnetic interaction [43]. The organization of the particles results in the formation of threedimensional structures, such as helices [44], superlattices [45], and other nanostructures [46] and mesoscopic systems [47, 48]. Systems built on spatial structural
order provide possibilities of ordered magnetic structures. The fabrication and study
of superferromagnets, superferrimagnets and superantiferromagnets provide a challenging field of collective experimental magnetism promoted by the possibility of
3D printing on the mesoscale [49].
Acknowledgements The authors are grateful to all their co-workers. This chapter includes results
obtained in collaboration with M. S. Andersson, G. Muscas, P. Anil Kumar, M. Hudl, as well as D.
Peddis, G. Singh, J. A. de Toro and their respective groups. The Swedish Research Council (VR)
is thanked for financial support.
References
1. P. Jönsson, Adv. Chem. Phys. 128, 191–248 (2004)
2. S. Bedanta, W. Kleemann, J. Phys. D Appl. Phys. 42, 013001 (2009)
3. S. Mörup, M.F. Hansen, C. Frandsen, Beilstein J. Nanotechnol. 1, 182–190 (2010)
4. S. Bedanta, O. Petracic, W. Kleemann, Supermagnetism in Handbook of Magnetic Materials
23, ed. by K. H. J. Buschow (Elsevier, 2017), pp. 1–83
5. D.S. Schmool, H. Kachkachi, Collective effects in assemblies of magnetic nanoparticles. in
Solid State Physics 67, ed. by R.E. Camley, R.L. Stamps (Academic Press, 2016), pp. 1–97
6. J.A. De Toro, S.S. Lee, D. Salazar, J.L. Cheong, P.S. Normile, P. Muniz, J.M. Riveiro, M.
Hillenkamp, F. Tournus, A. Tamion, P. Nordblad, Appl. Phys. Lett. 102, 183104 (2013)
7. D.L. Leslie-Pelecki, R.D. Rieke, Chem. Mater. 8, 1770 (1996)
8. M.S. Andersson, J.A. De Toro, S.S. Lee, P.S. Normile, P. Nordblad, R. Mathieu, Phys. Rev. B
93, 054407 (2016)
9. K. Binder, A.P. Young, Rev. Mod. Phys. 58, 801 (1986)
10. M.F. Hansen, P.E. Jönsson, P. Nordblad, P. Svedlindh, J. Phys. Condens. Matter 14, 4901–4914
(2002)
11. C. Djurberg, P. Svedlindh, P. Nordblad, M.F. Hansen, F. Bödker, S. Mörup, Phys. Rev. Lett.
79, 5154–5157 (1997)
12. J.L. Dormann, R. Cherkaoui, L. Spinu, M. Nogues, F. Lucari, F. D’Orazio, D. Fiorani, A.
Garcia, E. Tronc, J.P. Jolivet, J. Magn. Magn. Mater. 187, L139–L144 (1998)
13. K. Hiroi, K. Komatsu, T. Sato, Phys. Rev. B 83, 224423 (2011)
14. M.S. Andersson, R. Mathieu, P.S. Normile, S.S. Lee, G. Singh, P. Nordblad, J.A. De Toro,
Mater. Res. Express 3, 045015 (2016)
15. T. Jonsson, J. Mattsson, C. Djurberg, F.A. Khan, P. Nordblad, P. Svedlindh, Phys. Rev. Lett.
75, 4138 (1995)
16. R. Mathieu, M. Hudl, P. Nordblad, Europhys. Lett. 90, 67003 (2010)
17. R. Mathieu, P. Jönsson, D.N.H. Nam, P. Nordblad, Phys. Rev. B 63, 092401 (2001)
18. P.E. Jönsson, R. Mathieu, P. Nordblad, H. Yoshino, H. Aruga Katori, A. Ito, Phys. Rev. B 70,
174402 (2004)
19. M.S. Andersson, R. Mathieu, P.S. Normile, S.S. Lee, G. Singh, P. Nordblad, J.A. De Toro,
Phys. Rev. B 95, 184431 (2017)
20. P.S. Normile, M.S. Andersson, R. Mathieu, S.S. Lee, G. Singh, J.A. De Toro, Appl. Phys. Lett.
109, 152404 (2016)
