Subquadratic wavenumber dependence of the structural relaxation of supercooled liquid in the crossover regime


Autoria(s): Bhattacharyya, Sarika Maitra; Bagchi, Biman; Wolynes, Peter G
Data(s)

14/03/2010

Resumo

As a liquid is progressively supercooled toward its glass transition temperature, an intriguing weakening of the wavenumber (q) dependence of the structural relaxation time tau(q) in the intermediate-to-large q limit is observed both in experiments and simulation studies. Neither continuous Brownian diffusive dynamics nor discontinuous activated events can alone explain the anomalous wavenumber dependence. Here we use our recently developed theory that unifies the mode coupling theory for continuous dynamics, with the random first order transition theory treatment of activated discontinuous motion as a nucleationlike instanton process to understand the wavenumber dependence of density relaxation. The predicted smooth change in mechanism of relaxation from diffusive to activated, in the crossover regime, is wavevector dependent and appears to be responsible for the observed subquadratic,nalmost linear, q dependence of the relaxation time.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/27032/1/yuil.pdf

Bhattacharyya, Sarika Maitra and Bagchi, Biman and Wolynes, Peter G (2010) Subquadratic wavenumber dependence of the structural relaxation of supercooled liquid in the crossover regime. In: Journal of Chemical Physics, 132 (10).

Publicador

American Institute of Physics

Relação

http://jcp.aip.org/jcpsa6/v132/i10/p104503_s1

http://eprints.iisc.ernet.in/27032/

Palavras-Chave #Solid State & Structural Chemistry Unit
Tipo

Journal Article

PeerReviewed