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Erratum: Measuring the dynamics of circular dichroism in a pump-probe experiment with a Babinet-Soleil compensator
Circular dichroism contains rich information on the conformation of molecules and, in particular, of biomolecules, and measuring its variation in a pump-probe experiment is very promising but also very challenging. We propose a new technique to measure pump-induced variation of the circular dichrois...
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Published in: | Journal of the Optical Society of America. B, Optical physics Optical physics, 2007, Vol.24 (4) |
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container_title | Journal of the Optical Society of America. B, Optical physics |
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creator | Niezborala, Claire Hache, François |
description | Circular dichroism contains rich information on the conformation of molecules and, in particular, of biomolecules, and measuring its variation in a pump-probe experiment is very promising but also very challenging. We propose a new technique to measure pump-induced variation of the circular dichroism, which is based on the measurement of the probe ellipticity and its variation with the pump. This technique has the advantage that it does not require modulation of the probe polarization, which allows modulation of the pump intensity. We show theoretically and demonstrate experimentally that this technique is very sensitive and user friendly. We also show that it can be used to measure pump-induced change in the optical rotation, allowing for a complete characterization of pump-induced optical activity. Cop. 2006 Optical Society of America. |
doi_str_mv | 10.1364/JOSAB.24.001012 |
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B, Optical physics</title><description>Circular dichroism contains rich information on the conformation of molecules and, in particular, of biomolecules, and measuring its variation in a pump-probe experiment is very promising but also very challenging. We propose a new technique to measure pump-induced variation of the circular dichroism, which is based on the measurement of the probe ellipticity and its variation with the pump. This technique has the advantage that it does not require modulation of the probe polarization, which allows modulation of the pump intensity. We show theoretically and demonstrate experimentally that this technique is very sensitive and user friendly. We also show that it can be used to measure pump-induced change in the optical rotation, allowing for a complete characterization of pump-induced optical activity. 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This technique has the advantage that it does not require modulation of the probe polarization, which allows modulation of the pump intensity. We show theoretically and demonstrate experimentally that this technique is very sensitive and user friendly. We also show that it can be used to measure pump-induced change in the optical rotation, allowing for a complete characterization of pump-induced optical activity. Cop. 2006 Optical Society of America.</abstract><pub>Optical Society of America</pub><doi>10.1364/JOSAB.24.001012</doi><orcidid>https://orcid.org/0000-0001-6146-5811</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Optics Physics |
title | Erratum: Measuring the dynamics of circular dichroism in a pump-probe experiment with a Babinet-Soleil compensator |
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