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Regensburg 2004 – wissenschaftliches Programm

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CPP: Chemische Physik und Polymerphysik

CPP 3: Magnetic Resonance

CPP 3.5: Vortrag

Montag, 8. März 2004, 11:00–11:15, H 38

Spatially resolved and integral measurements of the electron spin diffusion properties of an organic quasi-1d conductor — •Malte Drescher, David Saez de Jauregui, and Elmar Dormann — Physikalisches Institut, Universit"t Karlsruhe (TH), D-76128 Karlsruhe

The radical cation salt (Fluoranthen)2PF6 is an organic quasi-1d conductor showing a Peierls transition at TP=186 K. X-band-pulse-ESR measurements were performed both below and above the semiconductor-metall phase transition. Using the static field gradient spin echo method the electron spin diffusion was analyzed.

Special attention was payed to the electron spin diffusion coefficient perpendicular to the molecular stacking axes a, because in this direction diffusion seems mainly caused by a conducting electron hopping process.

The electron spin diffusion is affected by the density of defects which can be influenced by irradiating the crystals with high-energetic protons (EP=25 MeV). In order to unravel these effects a (Fluoranthen)2PF6 crystal was irradiated homogeneously as well as through a periodic grid to result in a stripy pattern. We show a temperature dependent spatially resolved ESR-analysis of this No-dqzebra-likeNo-dq sample.

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