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Electron spin decoherence as a measure of nuclear spin bath frustration (CROSBI ID 650028)

Prilog sa skupa u zborniku | sažetak izlaganja sa skupa | domaća recenzija

Jurec, Jurica ; Rakvin, Boris ; Jokić, Milan ; Ilakovac-Kveder, Marina Electron spin decoherence as a measure of nuclear spin bath frustration // Solid-State Science & Research : Book of Abstracts and Programme / Juribašić Kulcsar, Marina ; Halasz, Ivan (ur.). Zagreb: Institut Ruđer Bošković, 2017. str. 72-72

Podaci o odgovornosti

Jurec, Jurica ; Rakvin, Boris ; Jokić, Milan ; Ilakovac-Kveder, Marina

engleski

Electron spin decoherence as a measure of nuclear spin bath frustration

Two realizations of solid-state environment, which differ in molecular packing, glassy and crystalline solid ethanol, are used as a model systems to study disorder of nuclear spin bath frustration. It is probed by the hyperfine interaction of the electron spin from the incorporated paramagnetic nitroxyl radical TEMPO. Nuclear spectral diffusion from ethanol protons is presented as the dominant mechanism of electron spin decoherence and proposed as a descriptor of the extent of disorder present in the system. It is shown that the dynamical decoupling control of the electron spin is affected by the extent of disorder in terms of the heterospin dephasing and can be numerically evaluated for the specific model system. The effect of odd/even number of decoupling pulses was not observed suggesting that for the description of proton spin bath frustration in solid ethanol higher terms than fourth-order proton spin correlations might be considered in modeling spectral diffusion mechanism.

Glassy state ; pulse EPR ; disorder ; CPMG ; dynamical decoupling

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Podaci o prilogu

72-72.

2017.

objavljeno

Podaci o matičnoj publikaciji

Solid-State Science & Research : Book of Abstracts and Programme

Juribašić Kulcsar, Marina ; Halasz, Ivan

Zagreb: Institut Ruđer Bošković

978-953-7941-15-4

Podaci o skupu

Solid-State Science & Research Meeting

poster

28.07.2017-30.07.2017

Zagreb, Hrvatska

Povezanost rada

Fizika, Kemija