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Identical spin rotation effect and electron spin waves in quantum gas of atomic hydrogen

Vainio O; Jarvinen J; Vasiliev S; Suominen KA; Novotny S; Lee DM; Lehtonen L; Ahokas J; Khmelenko VV; Sheludyakov S

dc.contributor.authorVainio O
dc.contributor.authorJarvinen J
dc.contributor.authorVasiliev S
dc.contributor.authorSuominen KA
dc.contributor.authorNovotny S
dc.contributor.authorLee DM
dc.contributor.authorLehtonen L
dc.contributor.authorAhokas J
dc.contributor.authorKhmelenko VV
dc.contributor.authorSheludyakov S
dc.date.accessioned2022-10-27T12:20:21Z
dc.date.available2022-10-27T12:20:21Z
dc.identifier.urihttps://www.utupub.fi/handle/10024/157926
dc.description.abstractWe present an experimental study of electron spin waves in atomic hydrogen gas compressed to high densities of similar to 5 x 10(18) cm(-3) at temperatures ranging from 0.26 to 0.6 K in the strong magnet ic field of 4.6 T. Hydrogen gas is in a quantum regime when the thermal de-Broglie wavelength is much larger than the s-wave scattering length. In this regime the identical particle effects play a major role in atomic collisions and lead to the identical spin rotation effect (ISR). We observed a variety of spin wave modes caused by this effect with strong dependence on the magnetic potential caused by variations of the polarizing magnetic field. We demonstrate confinement of the ISR modes in the magnetic potential and manipulate their properties by changing the spatial profile of the magnetic field. We have found that at a high enough density of H gas the magnons accumulate in their ground state in the magnetic trap and exhibit long coherence, which has a profound effect on the electron spin resonance spectra. Such macroscopic accumulation of the ground state occurs at a certain critical density of hydrogen gas, where the chemical potential of the magnons becomes equal to the energy of their ground state in the trapping potential.
dc.language.isoen
dc.publisherIOP PUBLISHING LTD
dc.titleIdentical spin rotation effect and electron spin waves in quantum gas of atomic hydrogen
dc.identifier.urnURN:NBN:fi-fe2021042719363
dc.relation.volume20
dc.contributor.organizationfi=kvanttioptiikan laboratorio|en=Laboratory of Quantum Optics|
dc.contributor.organizationfi=teoreettisen fysiikan laboratorio|en=Laboratory of Theoretical Physics|
dc.contributor.organizationfi=Wihurin fysiikantutkimuslaboratorio|en=Wihuri Physical Laboratory|
dc.contributor.organization-code2606703
dc.contributor.organization-code2606707
dc.contributor.organization-code2606701
dc.converis.publication-id32085525
dc.converis.urlhttps://research.utu.fi/converis/portal/Publication/32085525
dc.identifier.eissn1367-2630
dc.identifier.jour-issn1367-2630
dc.okm.affiliatedauthorSuominen, Kalle-Antti
dc.okm.affiliatedauthorLehtonen, Lauri
dc.okm.affiliatedauthorVasiliev, Sergey
dc.okm.affiliatedauthorAhokas, Janne
dc.okm.affiliatedauthorVainio, Otto
dc.okm.affiliatedauthorJärvinen, Jarno
dc.okm.discipline115 Avaruustieteet ja tähtitiedefi_FI
dc.okm.discipline115 Astronomy and space scienceen_GB
dc.okm.internationalcopublicationinternational co-publication
dc.okm.internationalityInternational publication
dc.okm.typeJournal article
dc.publisher.countryUnited Kingdomen_GB
dc.publisher.countryBritanniafi_FI
dc.publisher.country-codeGB
dc.relation.articlenumberARTN 055010
dc.relation.doi10.1088/1367-2630/aac2ab
dc.relation.ispartofjournalNew Journal of Physics
dc.year.issued2018


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