Differential Dynamic Microscopy: Probing wave vector dependent dynamics with a microscope
arXiv:1507.01344 · doi:10.1103/PhysRevLett.100.188102
Abstract
We demonstrate the use of an ordinary white-light microscope for the study of the q-dependent dynamics of colloidal dispersions. Time series of digital video images are acquired in bright field with a fast camera and image differences are Fourier-analyzed as a function of the time delay between them. This allows for the characterization of the particle dynamics independent on whether they can be resolved individually or not. The characteristic times are measured in a wide range of wavevectors and the results are found to be in good agreement with the theoretically expected values for Brownian motion in a viscous medium.
Cited by in corpus (6)
- Differential Dynamic Microscopy of Bacterial Motility
- Differential Dynamic Microscopy: a High-Throughput Method for Characterizing the Motility of Microorganism
- Nonlinear rheology of colloidal dispersions
- Characterization of anisotropic nano-particles by using depolarized dynamic light scattering in the near field
- Quasi-real-time analysis of dynamic near field scattering data using a graphics processing unit
- Optical extinction, refractive index, and multiple scattering for suspensions of interacting colloidal particles