Some key photochemical uncertainties that cannot be readily eliminated by current observations translate into a range of stratospheric O3 abundances in the tens of percent. The uncertainty in O3 production due to that in the cross sections for O2 in the Hertzberg continuum is studied here with the NCAR Community Atmosphere Model, which allows for interactive climate and ozone chemistry. A min-max range in the O2 cross sections of 30%, consistent with current uncertainties, changes O 3 abundances in the lower tropical stratosphere by up to 30%, with a relatively smaller and opposite change above 30 hPa. Here we have systematically examined the changes in the time-mean state, the seasonal cycle, and the interannual variability of the temperat...
The future evolution of tropical ozone in a changing climate is investigated by analysing time slice...
The stratospheric ozone layer shields surface life from harmful ultraviolet radiation. Following the...
© 2015 Dr. Kane Adam StoneWith stratospheric ozone on the path to recovery, understanding its future...
Some key photochemical uncertainties that cannot be readily eliminated by current observations trans...
Total ozone is controlled by dynamical advection as well as chemistry. At least for day-to-day varia...
Photolytic dissociation of molecular oxygen (O2) at wavelengths about 205 nm produces ozone (O3) in ...
Based on the HALOE and SHADOZ observations of ozone (O-3) and on a simple conceptual model of transp...
Anthropogenic emissions of chemical reactive trace gases have substantially altered the composition ...
Recent observations show a significant decrease of lower stratospheric (LS) ozone (O3) concentration...
Trends in ozone columns and vertical distributions were calculated for the period 1979–2004 based on...
Highest atmospheric ozone production rates can be found at around 30 km in the tropical stratosphere...
An improved stratospheric representation has been included in simulations with the Hadley Centre Had...
Multi-annual simulations with the Chemical Lagrangian Model of the Stratosphere (CLaMS) were conduct...
Cross-tropopause transport of O3 is a significant factor in the tropospheric budget and distribution...
Changes in the stratosphere-troposphere exchange (STE) of ozone over the last few decades have alter...
The future evolution of tropical ozone in a changing climate is investigated by analysing time slice...
The stratospheric ozone layer shields surface life from harmful ultraviolet radiation. Following the...
© 2015 Dr. Kane Adam StoneWith stratospheric ozone on the path to recovery, understanding its future...
Some key photochemical uncertainties that cannot be readily eliminated by current observations trans...
Total ozone is controlled by dynamical advection as well as chemistry. At least for day-to-day varia...
Photolytic dissociation of molecular oxygen (O2) at wavelengths about 205 nm produces ozone (O3) in ...
Based on the HALOE and SHADOZ observations of ozone (O-3) and on a simple conceptual model of transp...
Anthropogenic emissions of chemical reactive trace gases have substantially altered the composition ...
Recent observations show a significant decrease of lower stratospheric (LS) ozone (O3) concentration...
Trends in ozone columns and vertical distributions were calculated for the period 1979–2004 based on...
Highest atmospheric ozone production rates can be found at around 30 km in the tropical stratosphere...
An improved stratospheric representation has been included in simulations with the Hadley Centre Had...
Multi-annual simulations with the Chemical Lagrangian Model of the Stratosphere (CLaMS) were conduct...
Cross-tropopause transport of O3 is a significant factor in the tropospheric budget and distribution...
Changes in the stratosphere-troposphere exchange (STE) of ozone over the last few decades have alter...
The future evolution of tropical ozone in a changing climate is investigated by analysing time slice...
The stratospheric ozone layer shields surface life from harmful ultraviolet radiation. Following the...
© 2015 Dr. Kane Adam StoneWith stratospheric ozone on the path to recovery, understanding its future...