Preview

Magnetic Resonance in Solids

Advanced search

Magnetization of LiErF4 dipolar magnet in monocrystalline and polycrystalline form at low temperatures

https://doi.org/10.26907/mrsej-24202

Abstract

This work presents the results of experimental and theoretical studies of the magnetic properties of the LiErF4 single crystal and powder samples at low temperatures and applied field range of 0-9 T. The magnetization was calculated in the framework of the exchange-charge model taking into account dipole-dipole and electron-deformation interactions, with the calculation of the electron-deformation parameters. The theoretical analysis presents uantitative agreement in the temperature range of 2-300 K with the magnetization measurements of the LiErF4 samples.

About the Authors

G. Iu. Andreev
Kazan Federal University
Russian Federation

Kazan 420008



I. V. Romanova
Kazan Federal University
Russian Federation

Kazan 420008



S. L. Korableva
Kazan Federal University
Russian Federation

Kazan 420008



M. A. Cherosov
Kazan Federal University
Russian Federation

Kazan 420008



A. G. Kiiamov
Kazan Federal University
Russian Federation

Kazan 420008



H. Suzuki
Kanazawa University
Japan

Kanazawa 920-11



M. S. Tagirov
Institute of Applied Research, Tatarstan Academy of Science
Russian Federation

Kazan 420111



References

1. Aminov L. K., Malkin B. Z., Teplov M. A., in Handbook on the Physics and Chemistry of Rare Earths, Vol. 22, edited by Gschneider Jr. K. A., Eyring L. (Elsevier, 1996) pp. 295–506.

2. Rønnow H. M., Parthasarathy R., Jensen J., Aeppli G., Rosenbaum T. F., McMorrow D. F., Science 308, 389 (2005).

3. Wendl A., Eisenlohr H., Rucker F., Duvinage C., Kleinhans M., Vojta M., Pfleiderer C., Nature 609, 65 (2022).

4. Babkevich P., Finco A., Jeong M., Dalla Piazza B., Kovacevic I., Klughertz G., Kr¨amer K. W., Kraemer C., Adroja D. T., Goremychkin E., Unruh T., Str¨assle T., Di Lieto A., Jensen J., Rønnow H. M., Phys. Rev. B 92, 144422 (2015).

5. Babkevich P., Jeong M., Matsumoto Y., Kovacevic I., Finco A., Toft-Petersen R., Ritter C., M˚ansson M., Nakatsuji S., Rønnow H. M., Phys. Rev. Lett. 116, 197202 (2016).

6. Kovacevic I., Babkevich P., Jeong M., Piatek J. O., Boero G., Rønnow H. M., Phys. Rev. B 94, 214433 (2016).

7. McKenzie R. D., Stamp P. C. E., Phys. Rev. B 97, 214430 (2018).

8. Twengstr¨om M., Bovo L., Petrenko O. A., Bramwell S. T., Henelius P., Phys. Rev. B 102, 144426 (2020).

9. Dollberg T., Andresen J. C., Schechter M., Phys. Rev. B 105, L180413 (2022).

10. Shirron P., Canavan E., DiPirro M., Francis J., Jackson M., Tuttle J., King T., Grabowski M., Cryog. 44, 581 (2004).

11. Numazawa T., Kamiya K., Li J., Nakagome H., Shirron P., J. Cryo. Super. Soc. Jpn 50, 96 (2015).

12. Xie H., Tian L., Chen Q., Sun H., Gao X., Li Z., Mo Z., Shen J., Dalton Trans. 50, 17697 (2021).

13. Liu P., Yuan D., Dong C., Lin G., V´ıllora E. G., Zhao K., Shimamura K., Ma J., Wang J., Zhang Z., Li B., NPG Asia Mater. 15, 41 (2023).

14. Andreev G. I., Romanova I. V., Morozov O. A., Korableva S. L., Batulin R. G., Glazkov V. N., Sosin S. S., J. Magn. Magn. Mater. 589, 171600 (2024).

15. Vojna D., Slez´ak O., Lucianetti A., Mocek T., Appl. Sci. 9, 3160 (2019).

16. Zhang Z., Wu Z., Zhang Z., Su L., Wu A., Li Y., Lan J., Magnetochem. 9, 41 (2023).

17. Semashko V. V., Korableva S. L., Fedorov P. P., Inorg. Mater. 58, 447 (2022).

18. McKenzie R. D., Libersky M., Silevitch D. M., Rosenbaum T. F., Phys. Rev. A 106, 043716 (2022).

19. Berrington M. C., Sellars M. J., Longdell J. J., Rønnow H. M., Vallabhapurapu H. H., Adambukulam C., Laucht A., Ahlefeldt R. L., Adv. Optical Mater. 11, 2301167 (2023).

20. Keller C., Schmutz H., J. Inorg. Nucl. Chem. 27, 900 (1965).

21. Thoma R. E., Brunton G. D., Penneman R. A., Keenan T. K., Inorg. Chem. 9, 1096 (1970).

22. Mollabashi L., Jalali-Asadabadi S., Phys. Rev. B 102, 045120 (2020).

23. Schustereit T., M¨uller S. L., Schleid T., Hartenbach I., Crystals 1, 244 (2011).

24. Bergman D., Alicea J., Gull E., Balents L., Nature Phys. 3, 487–491 (2007).

25. Al’tshuler S. A., Krotov V. I., Malkin B. Z., JETP Lett. 32, 214 (1980).

26. Bumagina L. A., Krotov V. I., Malkin B. Z., Khasanov A. K., JETP 53, 792 (1981).

27. Rosenbaum T. F., Wu W., Ellman B., Yang J., Aeppli G., Reich D. H., J. Appl. Phys. 70, 5946 (1991).

28. Romanova I. V., Tagirov M. S., Magn. Reson. Solids 21, 19412 (2019).

29. Kraemer C., Nikseresht N., Piatek J. O., Tsyrulin N., Piazza B. D., Kiefer K., Klemke B., Rosenbaum T. F., Aeppli G., Gannarelli C., Prokes K., Podlesnyak A., Str¨assle T., Keller L., Zaharko O., Kr¨amer K. W., Rønnow H. M., Science 336, 1416 (2012).

30. Sattler J. P., Nemarich J., Phys. Rev. B 4, 1 (1971). Magnetic Resonance in Solids. Electronic Journal. 2024, Vol. 26, No 2, 24202 (8 pp.) 7

31. Mo Z., Gong J., Xie H., Zhang L., Fu Q., Gao X., Li Z., Shen J., Chin. Phys. B 32, 027503 (2023).

32. Fedorov P. P., Semashko V. V., Korableva S. L., Inorg. Mater. 58, 233 (2022).

33. Lutterotti L., Matthies S., Wenk H.-R., Schultz A., Richardson J., J. Appl. Phys. 81, 594 (1997).

34. Malkin B. Z., in Spectroscopy of Solids Containing Rare Earth Ions, Modern Problems in Condensed Matter Sciences, Vol. 21, edited by Kaplyanskii A. A., Macfarlane R. M. (Elsevier, 1987) Chap. 2, pp. 13–50.

35. Al’tshuler S. A., Kozyrev B. M., Electron Paramagnetic Resonance in Compounds of Transition Elements, 2nd ed. (John Wiley & Sons, 1974) 589 p.

36. Nuzhina D. S., Romanova I. V., Magn. Reson. Solids 18, 16205 (2016).

37. Aminov L. K., Malkin B. Z., Dinamika i Kinetika Electronnykh i Spinovykh Vozbuzhdeniy v Paramagnitnykh Kristallakh (Kazan State University, Kazan, 2008) 182 p. [In Russian].

38. Aminov L. K., Ershova A. A., Zverev D. G., Korableva S. L., Kurkin I. N., Malkin B. Z., Appl. Magn. Reson. 33, 351 (2008).


Review

For citations:


Andreev G.I., Romanova I.V., Korableva S.L., Cherosov M.A., Kiiamov A.G., Suzuki H., Tagirov M.S. Magnetization of LiErF4 dipolar magnet in monocrystalline and polycrystalline form at low temperatures. Magnetic Resonance in Solids. 2024;26(2):24202 (8 pp.). https://doi.org/10.26907/mrsej-24202

Views: 70


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2072-5981 (Online)