Fast Dynamics of Glassforming Liquids investigated by Dielectric Spectroscopy a Comparison.pdf
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Fast Dynamics of Glassforming Liquids investigated by Dielectric Spectroscopy a Comparison
9 Fast Dynamics of Glass-forming Liquids investigated by
9
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1 Dielectric Spectroscopy: a Comparison
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p
A U. Schneider, P. Lunkenheimer, R. Brand, and A. Loidl
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2 Experimentalphysik V, Institut f¨ur Physik, Universit¨at Augsburg,
] D-86135 Augsburg, Germany
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s
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a Motivation
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n Understanding the mechanism of the glass transition is one of the most challenging tasks of mod-
o
c ern condensed matter physics. Despite the ample experimental and theoretical work on this subject
[
there is still no universally accepted view thoroughly describing all physical aspects. Among the
1
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7 experimental approaches used to investigate this phenomenon, dielectric spectroscopy is a well estab-
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3 lished method probing the rotational dynamics of dipolar molecules and the translational dynamics
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0 of charged particles.
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9 Our group has access to an extraordinary wide range of frequencies from 10−6 to 1014 Hz almost
/
t
a covering 20 decades continuously. The various experimental setups include a home-made time-domain
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- spectrometer (10 µHz ≤ ν ≤ 1 kHz), commercially available autobalance bridges (20 Hz ≤ ν ≤ 20
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n MHz), and radio-frequency and microwave setups using coaxial reflection and transmission techniques
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c
: (1 MHz ≤ ν ≤ 30 GHz). At 40 GHz ≤ ν ≤ 1.2 THz a quasi-optical submillimeter-wave spectrometer is
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i
X employed measuring the complex transmission coefficient. Higher frequencies (450 GHz ≤ ν ≤ 10 THz)
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a are investigated with a commercially available Fourier-transform infrared spectrometer.
We applied these techniques to investigate the glass transition in the molec
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