We have studied the interannual and longer-term variations in ozone profiles over the Arctic from 1989 to 2003 using ozonesonde observations from seven northern high-latitude stations. The ozonesonde data have been carefully examined and made as internally consistent as possible. The homogenized measurements are analyzed with a statistical model. In both the stratosphere and troposphere the largest long-term changes have occurred in the late winter/spring period (JanuaryApril), the period of greatest interannual variability. In the stratosphere, layer ozone amounts correlate highly with proxies for the stratospheric circulation (100 hPa eddy heat flux averaged over 4570°N), polar ozone depletion (the calculated volume of polar stratospheric...
In this thesis, the chemical ozone loss in the Arctic stratosphere was investigated for twelve years...
Monthly average total ozone and monthly average temperature at 50hPa (T_) over Eureka, both obtained...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
The altitude dependent variability of ozone in the polar stratosphere is regularly observed by ballo...
The altitude dependent variability of ozone in the polar stratosphere is regularly observed by ballo...
This study aims to address the temporal and spatial variations of tropospheric ozone over the Arctic...
This study aims to address the temporal and spatial variations of tropospheric ozone over the Arctic...
Papers about ozone layer variability and related topics published in the U. S. S. R. from 1989 to 19...
Since 1980 the appearance of spring ozone depletion directly caused by chemical removal has signific...
Chemical ozone loss in the Arctic stratosphere was investigated for the twelve years between 1991 an...
The influence of the Arctic Oscillation (AO) on the vertical distribution of stratospheric ozone in ...
International audienceEven though ozone-depleting substances have been substantially reduced due to ...
International audienceEven though ozone-depleting substances have been substantially reduced due to ...
International audienceEven though ozone-depleting substances have been substantially reduced due to ...
The objective of this study is to discuss the altitude dependent interannual variability of ozone in...
In this thesis, the chemical ozone loss in the Arctic stratosphere was investigated for twelve years...
Monthly average total ozone and monthly average temperature at 50hPa (T_) over Eureka, both obtained...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
The altitude dependent variability of ozone in the polar stratosphere is regularly observed by ballo...
The altitude dependent variability of ozone in the polar stratosphere is regularly observed by ballo...
This study aims to address the temporal and spatial variations of tropospheric ozone over the Arctic...
This study aims to address the temporal and spatial variations of tropospheric ozone over the Arctic...
Papers about ozone layer variability and related topics published in the U. S. S. R. from 1989 to 19...
Since 1980 the appearance of spring ozone depletion directly caused by chemical removal has signific...
Chemical ozone loss in the Arctic stratosphere was investigated for the twelve years between 1991 an...
The influence of the Arctic Oscillation (AO) on the vertical distribution of stratospheric ozone in ...
International audienceEven though ozone-depleting substances have been substantially reduced due to ...
International audienceEven though ozone-depleting substances have been substantially reduced due to ...
International audienceEven though ozone-depleting substances have been substantially reduced due to ...
The objective of this study is to discuss the altitude dependent interannual variability of ozone in...
In this thesis, the chemical ozone loss in the Arctic stratosphere was investigated for twelve years...
Monthly average total ozone and monthly average temperature at 50hPa (T_) over Eureka, both obtained...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...