The Arctic winter 2010/11 was characterized by a persisting vortex with extremely cold temperatures in the lower stratosphere above northern Scandinavia leading to a strong activation of chlorine compounds (ClOx) like Cl, Cl2, ClO, ClOOCl, OClO, and HOCl which rapidly destroyed ozone when sunlight returned after winter solstice. MIPAS (Michelson Interferometer for Passive Atmospheric Sounding) and TELIS (Terahertz and submillimeter Limb Sounder) balloon measurements obtained in northern Sweden on 31 March 2011 inside the polar vortex have provided vertical profiles of inorganic and organic chlorine species as well as diurnal variations of ClO around sunrise over the whole altitude range in which chlorine is undergoing activation and deactiv...
We examine inorganic chlorine (Cl_y,) partitioning in the summer lower stratosphere using in situ ER...
2020 Author(s). We retrieved lower stratospheric vertical profiles of O3, HNO3, and HCl from solar s...
2020 Author(s). We retrieved lower stratospheric vertical profiles of O3, HNO3, and HCl from solar s...
The Arctic winter 2010/2011 was characterized by a persistent vortex with extremely low temperatures...
The Arctic winter 2010/2011 was characterized by a persistent vortex with extremely low temperatures...
The Arctic winter 2010/2011 was characterized by a persistent vortex with extremely low temperatures...
Arctic winters 2009/2010 and 2010/2011 were characterized by strong vortices with extremely cold tem...
Activated chlorine compounds in the polar winter stratosphere drive catalytic cycles that deplete oz...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
We examine inorganic chlorine (Cl_y,) partitioning in the summer lower stratosphere using in situ ER...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
We examine inorganic chlorine (Cl_y,) partitioning in the summer lower stratosphere using in situ ER...
2020 Author(s). We retrieved lower stratospheric vertical profiles of O3, HNO3, and HCl from solar s...
2020 Author(s). We retrieved lower stratospheric vertical profiles of O3, HNO3, and HCl from solar s...
The Arctic winter 2010/2011 was characterized by a persistent vortex with extremely low temperatures...
The Arctic winter 2010/2011 was characterized by a persistent vortex with extremely low temperatures...
The Arctic winter 2010/2011 was characterized by a persistent vortex with extremely low temperatures...
Arctic winters 2009/2010 and 2010/2011 were characterized by strong vortices with extremely cold tem...
Activated chlorine compounds in the polar winter stratosphere drive catalytic cycles that deplete oz...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
Active chlorine species play a dominant role in the catalytic destruction of stratospheric ozone in ...
We examine inorganic chlorine (Cl_y,) partitioning in the summer lower stratosphere using in situ ER...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
The Arctic winter 2015/16 was characterized by cold stratospheric temperatures. Here we present a co...
We examine inorganic chlorine (Cl_y,) partitioning in the summer lower stratosphere using in situ ER...
2020 Author(s). We retrieved lower stratospheric vertical profiles of O3, HNO3, and HCl from solar s...
2020 Author(s). We retrieved lower stratospheric vertical profiles of O3, HNO3, and HCl from solar s...