Sub-nanosecond, time-resolved, broadband infrared spectroscopy using synchrotron radiation
Abstract
A facility for sub-nanosecond time-resolved (pump-probe) infrared spectroscopy has been developed at the National Synchrotron Light Source of Brookhaven National Laboratory. A mode-locked Ti:sapphire laser produces 2 ps duration, tunable near-IR pump pulses synchronized to probe pulses from a synchrotron storage ring. The facility is unique on account of the broadband infrared from the synchrotron, which allows the entire spectral range from 2 cm-1 (0.25 meV) to 20,000 cm-1 (2.5 eV) to be probed. A temporal resolution of 200 ps, limited by the infrared synchrotron-pulse duration, is achieved. A maximum time delay of 170 ns is available without gating the infrared detector. To illustrate the performance of the facility, a measurement of electron-hole recombination dynamics for an HgCdTe semiconductor film in the far- and mid infrared range is presented.
Keywords
Cite
@article{arxiv.physics/0106089,
title = {Sub-nanosecond, time-resolved, broadband infrared spectroscopy using synchrotron radiation},
author = {R. P. S. M. Lobo and J. D. LaVeigne and D. H. Reitze and D. B. Tanner and G. L. Carr},
journal= {arXiv preprint arXiv:physics/0106089},
year = {2009}
}
Comments
11 pages with 9 figures included