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  Dichotomous dynamics of magnetic monopole fluids

Hsu, C.-C., Takahashi, H., Jerzembeck, F., Dasini, J., Carroll, C., Dusad, R., et al. (2024). Dichotomous dynamics of magnetic monopole fluids. PNAS, 121(21): 2320384121, pp. 1 of 7-7 of 7. doi:10.1073/pnas.2320384121.

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Hsu, Chun-Chih1, Autor
Takahashi, Hiroto1, Autor
Jerzembeck, Fabian2, Autor           
Dasini, Jahnatta1, Autor
Carroll, Chaia1, Autor
Dusad, Ritika1, Autor
Ward, Jonathan1, Autor
Dawson, Catherine1, Autor
Sharma, Sudarshan1, Autor
Luke, Graeme M.1, Autor
Blundell, Stephen J.1, Autor
Castelnovo, Claudio1, Autor
Hallén, Jonathan N.1, Autor
Moessner, Roderich1, Autor
Davis, J. C. Séamus3, Autor           
Affiliations:
1External Organizations, ou_persistent22              
2Physics of Quantum Materials, Max Planck Institute for Chemical Physics of Solids, Max Planck Society, ou_1863462              
3J. C. Séamus Davis, Max Planck Fellow, Max Planck Institute for Chemical Physics of Solids, Max Planck Society, ou_3266851              

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Schlagwörter: dysprosium titanate, frustrated magnetism, magnetic dynamics, spin ice, dysprosium, ice, article, controlled study, diffusion, female, liquid, magnetic field, magnetism, male, noise, phenomenology, relaxation time, sensor, squid, temperature
 Zusammenfassung: A recent advance in the study of emergent magnetic monopoles was the discovery that monopole motion is restricted to dynamical fractal trajectories [J. N. Hallén et al., Science378, 1218 (2022)], thus explaining the characteristics of magnetic monopole noise spectra [R. Dusad et al., Nature571, 234 (2019); A. M. Samarakoon et al., Proc. Natl. Acad. Sci. U.S.A.119, e2117453119 (2022)]. Here, we apply this novel theory to explore the dynamics of field-driven monopole currents, finding them composed of two quite distinct transport processes: initially swift fractal rearrangements of local monopole configurations followed by conventional monopole diffusion. This theory also predicts a characteristic frequency dependence of the dissipative loss angle for AC field-driven currents. To explore these novel perspectives on monopole transport, we introduce simultaneous monopole current control and measurement techniques using SQUID-based monopole current sensors. For the canonical material Dy2Ti2O7, we measure [Formula: see text], the time dependence of magnetic flux threading the sample when a net monopole current [Formula: see text] is generated by applying an external magnetic field [Formula: see text] These experiments find a sharp dichotomy of monopole currents, separated by their distinct relaxation time constants before and after t ~[Formula: see text] from monopole current initiation. Application of sinusoidal magnetic fields [Formula: see text] generates oscillating monopole currents whose loss angle [Formula: see text] exhibits a characteristic transition at frequency [Formula: see text] over the same temperature range. Finally, the magnetic noise power is also dichotomic, diminishing sharply after t ~[Formula: see text]. This complex phenomenology represents an unprecedented form of dynamical heterogeneity generated by the interplay of fractionalization and local spin configurational symmetry.

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Sprache(n): eng - English
 Datum: 2024-05-14
 Publikationsstatus: Erschienen
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 Ort, Verlag, Ausgabe: -
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 Identifikatoren: DOI: 10.1073/pnas.2320384121
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Titel: PNAS
  Andere : Proceedings of the National Academy of Sciences of the United States of America
  Andere : Proceedings of the National Academy of Sciences of the USA
  Kurztitel : Proc. Natl. Acad. Sci. U. S. A.
Genre der Quelle: Zeitschrift
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Affiliations:
Ort, Verlag, Ausgabe: Washington, D.C. : National Academy of Sciences
Seiten: e2320384121 Band / Heft: 121 (21) Artikelnummer: 2320384121 Start- / Endseite: 1 of 7 - 7 of 7 Identifikator: ISSN: 0027-8424
CoNE: https://pure.mpg.de/cone/journals/resource/954925427230