​Physicists prove that 2D and 3D liquids are fundamentally different 

Published on : 14-Jan-2020

Assoc Prof Pica Ciamarra.jpg

A 50-year-old puzzle in statistical mechanics has been solved by an international team of researchers who have proved that two-dimensional (2D) liquids have fundamentally different dynamical properties to three-dimensional (3D) liquids. 

Researchers routinely use 2D experiments and simulations to represent 3D liquids, simply because studies in 2D are easier to do. 

With these studies, physicists aim at rationalising familiar macroscopic fluid properties, such as the viscosity, in terms of the microscopic motion of the particles, which in 2D can be directly visualised.

The team led by Associate Professor Massimo Pica Ciamarra at Nanyang Technological University, Singapore (NTU Singapore) set out to understand the ‘thermal motion’ of atoms in 2D and 3D liquids. 

Using a mix of pen-and-paper calculations and numerical simulations, they predicted that atoms in 2D liquids can travel for long distances before effectively ‘forgetting’ their initial positions. This behaviour gives rise to a subtle collective motion of the atoms, of a sort that had previously only been thought to occur in solids.

To confirm their theoretical findings, the researchers performed experiments that tracked the motions of colloidal particles under a microscope. In ordinary three-dimensional liquids, such particles execute a type of random motion known as Brownian motion. 

But in two-dimensional liquids, the team was able to demonstrate that the Brownian motion is overlaid on large-scale collective motions. This collective motion was previously believed to only occur in 2D solids, as predicted in the 1960s by Mermin and Wagner. 

The proof of the fundamental difference between 2D and 3D liquids was obtained by researchers at NTU Singapore, the Jawaharlal Nehru Centre for Advanced Scientific Research in India, the University of Science and Technology of China, and the University of California (Los Angeles) in the United States. Their work was published in November in the Proceedings of the National Academy of Sciences (PNAS).

“Our discovery shows that two-dimensional liquids and three-dimensional liquids are not just variants of each other, but fundamentally different types of matter,” said Assoc Prof Pica Ciamarra.

“Our findings help to explain many puzzling differences between the dynamical properties of two- and three-dimensional liquids, which had been reported in the scientific literature,” said Assoc Prof Pica Ciamarra. “It is only in 2D, not in 3D or higher dimensions, that the relaxation time is not inversely proportional to the diffusivity of the particles”. “

“To extract relevant information on the dynamics of 3D liquids from the 2D investigations” added Dr. Y.-W. Li, co-author of this study, “researchers need to develop a way to selectively filter-out the effect of the observed collective particle oscillations”.


Notes to Editor

Paper titled "Long-wavelength fluctuations and anomalous dynamics in 2-dimensional liquids", is published in the Proceedings of the National Academy of Sciences of the United States of America (PNAS), on 12 November 2019

DOI: https://doi.org/10.1073/pnas.1909319116

Media contact:

Lester Kok
Assistant Director
Corporate Communications Office 
Nanyang Technological University
Email: lesterkok@ntu.edu.sg

About Nanyang Technological University, Singapore
A research-intensive public university, Nanyang Technological University, Singapore (NTU Singapore) has 33,000 undergraduate and postgraduate students in the Engineering, Business, Science, Humanities, Arts, & Social Sciences, and Graduate colleges. It also has a medical school, the Lee Kong Chian School of Medicine, set up jointly with Imperial College London.
NTU is also home to world-class autonomous institutes – the National Institute of Education, S Rajaratnam School of International Studies, Earth Observatory of Singapore, and Singapore Centre for Environmental Life Sciences Engineering – and various leading research centres such as the Nanyang Environment & Water Research Institute (NEWRI) and Energy Research Institute @ NTU (ERI@N).
Ranked 11th in the world, NTU has been placed the world’s top young university for the past six years. The NTU Smart Campus is frequently listed among the Top 15 most beautiful university campuses in the world and it has 57 Green Mark-certified (equivalent to LEED-certified) building projects, of which 95% are certified Green Mark Platinum. Apart from its main campus, NTU also has a campus in Novena, Singapore’s healthcare district.
For more information, visit www.ntu.edu.sg.

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