[1] The sensitivity of Arctic ozone loss to polar stratospheric cloud volume (VPSC) and chlorine and bromine loading is explored using chemistry and transport models (CTMs). One simulation uses multi-decadal winds and temperatures from a general circulation model (GCM). Winter polar ozone loss depends on both equivalent effective stratospheric chlorine (EESC) and polar vortex characteristics (temperatures, descent, isolation, polar stratospheric cloud amount). The simulation reproduces a linear relationship between ozone loss and VPSC in agreement with that derived from observations for 1992–2003. The relationship holds for EESCwithin85 % of its maximum (1990–2020). For lower EESC the ozone loss varies linearly with EESC unless VPSC 0. A s...
Dynamical processes and changes in the ozone layer in the Arctic stratosphere during the winter of 2...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
Through first signs of stratospheric chemical ozone losses in the Arctic have been reported since 19...
During the past two decades, the ozone layer has developed a “hole” each winter and spring above the...
Ozone and water vapour are important trace gases in the atmosphere, where both play an important rol...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1 degr...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of ozone loss rates using a three-dimensional chemical transport model and a box model d...
Simulations of ozone loss rates using a three-dimensional chemical transport model and a box model d...
Simulations of ozone loss rates using a three-dimensional chemical transport model and a box model d...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
Dynamical processes and changes in the ozone layer in the Arctic stratosphere during the winter of 2...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
Through first signs of stratospheric chemical ozone losses in the Arctic have been reported since 19...
During the past two decades, the ozone layer has developed a “hole” each winter and spring above the...
Ozone and water vapour are important trace gases in the atmosphere, where both play an important rol...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1 degr...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of polar ozone losses were performed using the three-dimensional high-resolution (1∘ × 1...
Simulations of ozone loss rates using a three-dimensional chemical transport model and a box model d...
Simulations of ozone loss rates using a three-dimensional chemical transport model and a box model d...
Simulations of ozone loss rates using a three-dimensional chemical transport model and a box model d...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
Dynamical processes and changes in the ozone layer in the Arctic stratosphere during the winter of 2...
International audienceThe stratospheric ozone loss during the Arctic winters 2004/05-2009/10 is inve...
Through first signs of stratospheric chemical ozone losses in the Arctic have been reported since 19...