Avinash Kumar Kumar Anomalous Relaxation in Colloidal Systems

Anomalous Relaxation in Colloidal Systems

von Avinash Kumar

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Beschreibung

The thesis presents a systematic study of the Mpemba effect in a colloidal system with a micron-sized particle diffusing in a water bath. While the Mpemba effect, where a system’s thermal relaxation time is a non-monotonic function of the initial temperature, has been observed in water since Aristotle’s era, the underlying mechanism of the effect is still unknown. Recent studies indicate that the effect is not limited to water and has been studied both experimentally and numerically in a wide variety of systems. By carefully designing a double-well potential using feedback-based optical tweezers, the author demonstrates that an initially hot system can sometimes cool faster than an initially warm system. The author also presents the first observation in any system of another counterintuitive effect—the inverse Mpemba effect—where the colder of the two samples reaches the thermal equilibrium at a hot temperature first. The results for both the observations agree with theoretical predictions based on the Fokker-Planck equation. The experiments reveal that, for carefully chosen conditions, a strong version of both of the effects are observed where a system can relax to the bath temperature exponentially faster than under typical conditions.
The thesis presents a systematic study of the Mpemba effect in a colloidal system with a micron-sized particle diffusing in a water bath. While the Mpemba effect, where a system’s thermal relaxation time is a non-monotonic function of the initial temperature, has been observed in water since Aristotle’s era, the underlying mechanism of the effect is still unknown. Recent studies indicate that the effect is not limited to water and has been studied both experimentally and numerically in a wide variety of systems. By carefully designing a double-well potential using feedback-based optical tweezers, the author demonstrates that an initially hot system can sometimes cool faster than an initially warm system. The author also presents the first observation in any system of another counterintuitive effect—the inverse Mpemba effect—where the colder of the two samples reaches the thermal equilibrium at a hot temperature first. The results for both the observations agree with theoretical predictions based on the Fokker-Planck equation. The experiments reveal that, for carefully chosen conditions, a strong version of both of the effects are observed where a system can relax to the bath temperature exponentially faster than under typical conditions.
Nominated as an outstanding PhD thesis by Simon Fraser University Advances understanding of the mysterious Mpemba effect in colloidal systems Presents the first observation of the inverse Mpemba effect

Autor*in

Avinash Kumar

Themen in »Anomalous Relaxation in Colloidal Systems«

Mpemba effect Inverse Mpemba effect Fokker-Planck equation Thermal relaxation Metastability Free-energy landscape Feedback traps Optical tweezers Virtual potentials

Stimmen zu »Anomalous Relaxation in Colloidal Systems«

Details

ISBN: 9783031132797
Verlag: Springer International Publishing
Erscheinung: 23.10.2022

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