Two-photon spectroscopy and analysis with a white-light continuum probe
- 15 February 2002
- journal article
- Published by Optica Publishing Group in Optics Letters
- Vol. 27 (4), 270-272
- https://doi.org/10.1364/ol.27.000270
Abstract
We present a powerful experimental tool and analysis for characterization of two-photon absorption (2PA) spectra. We demonstrate this method with ZnS and then apply it to organic dyes in solution. We also compare the results with those from other methods such as two-photon fluorescence spectroscopy. This femtosecond pump–probe method uses a white-light continuum (WLC) as the probe to produce a nondegenerate 2PA spectrum. The extreme chirp of the WLC requires that transmittance data be collected over a range of temporal delays between pump and probe pulses. These data then need to be corrected for the effects of this chirp as well as for the temporal walk-off of the pulses in the sample that result from the frequency nondegenerate nature of the experiment. We present a simple analytic solution for the transmitted fluence through the sample, which is applicable for most practical cases.Keywords
This publication has 8 references indexed in Scilit:
- Determination of the temporal response function in femtosecond pump-probe systemsApplied Physics B Laser and Optics, 2001
- Synthesis of New Two-Photon Absorbing Fluorene Derivatives via Cu-Mediated Ullmann CondensationsThe Journal of Organic Chemistry, 2000
- Infrared to ultraviolet measurements of two-photon absorption and n/sub 2/ in wide bandgap solidsIEEE Journal of Quantum Electronics, 1996
- Measurement of two-photon excitation cross sections of molecular fluorophores with data from 690 to 1050 nmJournal of the Optical Society of America B, 1996
- Convenient Method of Measuring the Chirp Structure of Femtosecond White-Light Continuum PulsesApplied Spectroscopy, 1995
- Pump—probe propagation in a passive Kerr nonlinear optical mediumJournal of the Optical Society of America B, 1995
- Kramers-Krönig relations in nonlinear opticsOptical and Quantum Electronics, 1992
- High-sensitivity, single-beam n_2 measurementsOptics Letters, 1989