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Quay, C. H. L. ; Weideneder, M. ; Chiffaudel, Y. ; Strunk, Christoph ; Aprili, M.

Quasiparticle spin resonance and coherence in superconducting aluminium

Quay, C. H. L., Weideneder, M., Chiffaudel, Y., Strunk, Christoph und Aprili, M. (2015) Quasiparticle spin resonance and coherence in superconducting aluminium. Nature Communications 6, 8660 EP.

Veröffentlichungsdatum dieses Volltextes: 17 Okt 2016 14:12
Artikel
DOI zum Zitieren dieses Dokuments: 10.5283/epub.34716


Zusammenfassung

Conventional superconductors were long thought to be spin inert; however, there is now increasing interest in both (the manipulation of) the internal spin structure of the ground-state condensate, as well as recently observed long-lived, spin-polarized excitations (quasiparticles). We demonstrate spin resonance in the quasiparticle population of a mesoscopic superconductor (aluminium) using novel ...

Conventional superconductors were long thought to be spin inert; however, there is now increasing interest in both (the manipulation of) the internal spin structure of the ground-state condensate, as well as recently observed long-lived, spin-polarized excitations (quasiparticles). We demonstrate spin resonance in the quasiparticle population of a mesoscopic superconductor (aluminium) using novel on-chip microwave detection techniques. The spin decoherence time obtained (similar to 100 ps), and its dependence on the sample thickness are consistent with Elliott-Yafet spin-orbit scattering as the main decoherence mechanism. The striking divergence between the spin coherence time and the previously measured spin imbalance relaxation time (similar to 10 ns) suggests that the latter is limited instead by inelastic processes. This work stakes out new ground for the nascent field of spin-based electronics with superconductors or superconducting spintronics.



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Details

DokumentenartArtikel
Titel eines Journals oder einer ZeitschriftNature Communications
Verlag:NATURE PUBLISHING GROUP
Ort der Veröffentlichung:LONDON
Band:6
Seitenbereich:8660 EP
Datum26 Oktober 2015
Zusätzliche Informationen (Öffentlich)Article
InstitutionenPhysik > Institut für Experimentelle und Angewandte Physik > Lehrstuhl Professor Weiss > Arbeitsgruppe Christoph Strunk
Identifikationsnummer
WertTyp
10.1038/ncomms9660DOI
Stichwörter / KeywordsELECTRON-SPIN; CONDUCTION ELECTRONS; RELAXATION; FILMS; STATE; PARAMAGNETISM; SPINTRONICS;
Dewey-Dezimal-Klassifikation500 Naturwissenschaften und Mathematik > 530 Physik
StatusVeröffentlicht
BegutachtetJa, diese Version wurde begutachtet
An der Universität Regensburg entstandenZum Teil
URN der UB Regensburgurn:nbn:de:bvb:355-epub-347169
Dokumenten-ID34716

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