{\rtf1\ansi\deff0\deftab360 {\fonttbl {\f0\fswiss\fcharset0 Arial} {\f1\froman\fcharset0 Times New Roman} {\f2\fswiss\fcharset0 Verdana} {\f3\froman\fcharset2 Symbol} } {\colortbl; \red0\green0\blue0; } {\info {\author Biblio 7.x}{\operator }{\title Biblio RTF Export}} \f1\fs24 \paperw11907\paperh16839 \pgncont\pgndec\pgnstarts1\pgnrestart Zappa, C J, Asher, W E, Jessup, A T, Klinke, J and Long, S R (2004). Microbreaking and the enhancement of air-water transfer velocity. J. Geophys. Res. 109 C08S16\par \par Long, S R and Klinke, J (2002). A closer look at short waves generated by wave interactions with adverse currents. Gas Transfer at Water Surfaces. American Geophysical Union. 127 121--128\par \par Zappa, C J, Asher, W E, Jessup, A T, Klinke, J and Long, S R (2002). Effect of microscale wave breaking on air-water gas transfer. Gas Transfer at Water Surfaces. American Geophysical Union. 127 23--29\par \par Klinke, J and Long, S R (2000). Generation of short waves by wave-current interaction. Geoscience and Remote Sensing Symposium, 2000. Proceedings. IGARSS 2000. IEEE 2000 International. 1084--1086\par \par Klinke, J, J\'e4hne, B and Long, S R (1999). Observations of free and bound gravity-capillary Waves. The Wind-Driven Air-Sea Interface, Electromagnetic and Acoustic Sensing, Wave Dynamics and Turbulent Fluxes. 87--88\par \par Spedding, G R, Klinke, J and Long, S R (1996). Estimating $\\omega(k)$ in an unsteady, wind-generated surface wave field from the 2D complex wavelet transform of the surface slope. Proc.\\ The Air-Sea Interface, Radio and Acoustic Sensing, Turbulence and Wave Dynamics, Marseille, 24--30. June 1993. RSMAS, University of Miami. 373--382\par \par }