Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are assessed using a seven-member ensemble from the Met Office Unified Model with United Kingdom Chemistry and Aerosols (UM-UKCA) simulating the period 1960–2100. The Arctic mean March total column ozone increases throughout the 21st century at a rate of ∼ 11.5 DU decade<sup>−1</sup>, and is projected to return to the 1980 level in the late 2030s. However, the integrations show that even past 2060 springtime Arctic ozone can episodically drop by ∼ 50–100 DU below the corresponding long-term ensemble mean for that period, reaching values characteristic of the near-present-day average level. Consistent with the global decline in inorga...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
International audienceThe Arctic polar vortex exhibited widespread regions of low temperatures durin...
Dynamical processes and changes in the ozone layer in the Arctic stratosphere during the winter of 2...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
In the Arctic stratosphere, the combination of chemical ozone depletion by halogenated ozone-depleti...
International audienceFuture increases in the concentration of greenhouse gases and water vapour may...
International audienceThe amplitude of ozone depletion in the Arctic is monitored every year since 1...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
Polar ozone depletion has been a major environmental threat for humanity since the late 1980s. The 2...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
Abstract. Total column ozone values from an ensemble of UM-UKCA model simulations are examined to in...
During the past two decades, the ozone layer has developed a “hole” each winter and spring above the...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
International audienceThe Arctic polar vortex exhibited widespread regions of low temperatures durin...
Dynamical processes and changes in the ozone layer in the Arctic stratosphere during the winter of 2...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
Future trends in Arctic springtime total column ozone, and its chemical and dynamical drivers, are a...
In the Arctic stratosphere, the combination of chemical ozone depletion by halogenated ozone-depleti...
International audienceFuture increases in the concentration of greenhouse gases and water vapour may...
International audienceThe amplitude of ozone depletion in the Arctic is monitored every year since 1...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
Polar ozone depletion has been a major environmental threat for humanity since the late 1980s. The 2...
[1] Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forci...
Abstract. Total column ozone values from an ensemble of UM-UKCA model simulations are examined to in...
During the past two decades, the ozone layer has developed a “hole” each winter and spring above the...
Simulations from eleven coupled chemistry-climate models (CCMs) employing nearly identical forcings...
International audienceThe Arctic polar vortex exhibited widespread regions of low temperatures durin...
Dynamical processes and changes in the ozone layer in the Arctic stratosphere during the winter of 2...