We demonstrate that the value of the underlying frequency-frequency correlation function can be retrieved from a two-dimensional optical correlation spectrum through a simple relationship. The proposed method yields both intuitive clues and a quantitative measure of the dynamics of the system. The technique is applied to studying the effects of temperature and phase changes on liquid-glass solvent dynamics. (c) 2006 Optical Society of America</p
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Two dimensional correlation spectroscopy is a powerfull tool for spectral analysis. It is able to re...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Abstract. Correlation spectroscopy was used to study the effects of temperature and phase changes on...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Two dimensional correlation spectroscopy is a powerfull tool for spectral analysis. It is able to re...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
We demonstrate that the value of the underlying frequency-frequency correlation function can be retr...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Abstract. Correlation spectroscopy was used to study the effects of temperature and phase changes on...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Correlation spectroscopy was used to study the effects of temperature and phase changes on liquid an...
Two dimensional correlation spectroscopy is a powerfull tool for spectral analysis. It is able to re...