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Novel Experimental Method to Measure the Static Correlations in Supercooled Molecular Glass-forming Liquids

ORAL

Abstract

Enormous enhancement in the viscosity of a liquid near its glass transition is generally connected to the growing many-body static correlations near the transition, often coined as ‘amorphous ordering’. Estimating the length scales of such correlations in different glass-forming liquids is highly important to unravel the physics of glass formation. Experiments on molecular glass-forming liquids become pivotal in this scenario as the viscosity grows several folds (∼ 1014), and simulations or colloidal glass experiments fail to access the long-time scales required. Here we design an experiment to extract the static length scales in molecular liquids using dilute amounts of another large molecule as a pinning site. Results from dielectric relaxation experiments on supercooled glycerol with different pinning concentrations of sorbitol and Glucose as well as the simulations on a few model glass-forming liquids with pinning sites indicates the robustness of the proposed method, opening a plethora of opportunity to study the physics of glass transition in other molecular liquids.

Publication: arXiv:2106.06325 [cond-mat.soft]

Presenters

  • Rajsekhar Das

    University of Texas at Austin

Authors

  • Rajsekhar Das

    University of Texas at Austin

  • Bhanu Prasad Bhowmik

    Weizmann Institute of Science

  • Anand Balan Puthirath

    Rice University

  • Tharangattu N. Narayanan

    Centre for Interdisciplinary Sciences, Tata Institute of Fundamental Research,Hyderabad

  • Smarajit Karmakar

    Tata Institute of Fundamental Research(TIFR), Hyderabad, India, Centre for Interdisciplinary Sciences, Tata Institute of Fundamental Research,Hyderabad