On the ergodicity of supercooled molecular glass-forming liquids at the dynamical arrest: the o-terphenyl case

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作者
Francesco Mallamace
Carmelo Corsaro
Nancy Leone
Valentina Villari
Norberto Micali
Sow-Hsin Chen
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[1] Università di Messina I-98168,Dipartimento di Fisica e Scienze della Terra
[2] Massachusetts Institute of Technology,Department of Nuclear Science and Engineering
[3] CNR-IPCF Istituto per i Processi Chimico-Fisici,undefined
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The dynamics of supercooled ortho-terphenyl has been studied using photon-correlation spectroscopy (PCS) in the depolarized scattering geometry. The obtained relaxation curves are analyzed according to the mode-coupling theory (MCT) for supercooled liquids. The main results are: i) the observation of the secondary Johari-Goldstein relaxation (β) that has its onset just at the dynamical crossover temperature TB (TM > TB > Tg); ii) the confirmation, of the suggestion of a recent statistical mechanical study, that such a molecular system remains ergodic also below the calorimetric glass-transition temperature Tg. Our experimental data give evidence that the time scales of the primary (α) and this secondary relaxations are correlated. Finally a comparison with recent PCS experiments in a colloidal system confirms the primary role of the dynamical crossover in the physics of the dynamical arrest.
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