TY - JOUR
T1 - Narrowing of phonon spectrum induced by ultrafast charge fluctuations in an organic dimer Mott insulator
AU - Itoh, K.
AU - Itoh, H.
AU - Saito, S.
AU - Hosako, I.
AU - Nakamura, Y.
AU - Kishida, H.
AU - Yoneyama, N.
AU - Sasaki, T.
AU - Ishihara, S.
AU - Iwai, S.
PY - 2013/9/3
Y1 - 2013/9/3
N2 - We have observed the characteristic temperature dependence of the intermolecular phonon spectrum in the organic dimer Mott insulator κ-(ET)2Cu2(CN)3 exhibiting a dielectric anomaly at ∼30 K. The anomalous spectral narrowing of the 55 cm-1 phonon peak at ∼30 K was analyzed in terms of motional narrowing within the framework of a stationary Gaussian process, i.e., the phonon frequency is modulated by the ultrafast charge fluctuation. The spectral narrowing occurs because the time constant of the correlation time τc and the amplitude Δ of the frequency modulation satisfy the relation τc<1/Δ at 30 K. At temperatures below 30 K, the motional narrowing is disturbed by the increase of τc, near the charge-glass or the short-range order at 6 K. On the other hand, for temperatures above 30 K, the motional narrowing is disturbed by the increase of Δ with increasing temperature.
AB - We have observed the characteristic temperature dependence of the intermolecular phonon spectrum in the organic dimer Mott insulator κ-(ET)2Cu2(CN)3 exhibiting a dielectric anomaly at ∼30 K. The anomalous spectral narrowing of the 55 cm-1 phonon peak at ∼30 K was analyzed in terms of motional narrowing within the framework of a stationary Gaussian process, i.e., the phonon frequency is modulated by the ultrafast charge fluctuation. The spectral narrowing occurs because the time constant of the correlation time τc and the amplitude Δ of the frequency modulation satisfy the relation τc<1/Δ at 30 K. At temperatures below 30 K, the motional narrowing is disturbed by the increase of τc, near the charge-glass or the short-range order at 6 K. On the other hand, for temperatures above 30 K, the motional narrowing is disturbed by the increase of Δ with increasing temperature.
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U2 - 10.1103/PhysRevB.88.125101
DO - 10.1103/PhysRevB.88.125101
M3 - Article
AN - SCOPUS:84885095136
SN - 0163-1829
VL - 88
JO - Physical Review B - Condensed Matter and Materials Physics
JF - Physical Review B - Condensed Matter and Materials Physics
IS - 12
M1 - 125101
ER -