Primary ice formation, which is an important process for mixed-phase clouds with an impact on their lifetime, radiative balance, and hence the climate, strongly depends on the availability of ice-nucleating particles (INPs). Supercooled droplets within these clouds remain liquid until an INP immersed in or colliding with the droplet reaches its activation temperature. Only a few aerosol particles are acting as INPs and the freezing efficiency varies among them. Thus, the fraction of supercooled water in the cloud depends on the specific properties and concentrations of the INPs. Primary biological aerosol particles (PBAPs) have been identified as very efficient INPs at high subzero temperatures, but their very low atmospheric concentrations...
Ice nucleating particles (INPs) increase the temperature at which supercooled droplets start to free...
Atmospheric aerosols can act as ice-nucleating particles (INPs) and thereby exert important influenc...
An aerosol-cloud modeling framework is described to simulate the activation of ice particles and dro...
Primary ice formation, which is an important process for mixed-phase clouds with an impact on their...
A new empirical parameterization (EP) for multiple groups of primary biological aerosol particles (P...
Airborne ice nucleating particles (INPs) promote the freezing of cloud droplets, which is relevant f...
A small fraction of aerosol particles known as Ice-Nucleating Particles (INPs) have the potential to...
When exposed to sufficiently humid environments, pollen grains burst and release large quantities of...
In order to effectively predict the formation of ice in clouds we need to know which subsets of aero...
The process of cloud glaciation strongly alters the properties of mixed-phase clouds. Between 0C to ...
State-of-the-art aerosol-dependent parameterisations describing each heterogeneous ice nucleation mo...
Ice crystal formation in the mixed-phase region of deep convective clouds can affect the properties ...
A minute fraction of atmospheric particles exert a disproportionate effect on the phase of mixed-pha...
Reicher N, Budke C, Eickhoff L, et al. Size-dependent ice nucleation by airborne particles during du...
Ice-nucleating particles (INPs) have important influences on cirrus clouds and the climate system; h...
Ice nucleating particles (INPs) increase the temperature at which supercooled droplets start to free...
Atmospheric aerosols can act as ice-nucleating particles (INPs) and thereby exert important influenc...
An aerosol-cloud modeling framework is described to simulate the activation of ice particles and dro...
Primary ice formation, which is an important process for mixed-phase clouds with an impact on their...
A new empirical parameterization (EP) for multiple groups of primary biological aerosol particles (P...
Airborne ice nucleating particles (INPs) promote the freezing of cloud droplets, which is relevant f...
A small fraction of aerosol particles known as Ice-Nucleating Particles (INPs) have the potential to...
When exposed to sufficiently humid environments, pollen grains burst and release large quantities of...
In order to effectively predict the formation of ice in clouds we need to know which subsets of aero...
The process of cloud glaciation strongly alters the properties of mixed-phase clouds. Between 0C to ...
State-of-the-art aerosol-dependent parameterisations describing each heterogeneous ice nucleation mo...
Ice crystal formation in the mixed-phase region of deep convective clouds can affect the properties ...
A minute fraction of atmospheric particles exert a disproportionate effect on the phase of mixed-pha...
Reicher N, Budke C, Eickhoff L, et al. Size-dependent ice nucleation by airborne particles during du...
Ice-nucleating particles (INPs) have important influences on cirrus clouds and the climate system; h...
Ice nucleating particles (INPs) increase the temperature at which supercooled droplets start to free...
Atmospheric aerosols can act as ice-nucleating particles (INPs) and thereby exert important influenc...
An aerosol-cloud modeling framework is described to simulate the activation of ice particles and dro...