Ice particle residuals (IRs) and the total aerosol particle population were sampled in parallel during mixed-phase cloud events at the high-altitude research station Jungfraujoch in January–February 2017. Particles were sampled behind an ice-selective counterflow impactor (Ice-CVI) for IRs and a heated total inlet for the total aerosol particles. A dilution set-up was used to collect total particles with the same sampling duration as for IRs to prevent overloading of the substrates. About 4000 particles from 10 Ice-CVI samples (from 7 days of cloud events at temperatures at the site between −10 and −18 ∘C) were analysed and classified with operator-controlled scanning electron microscopy. Contamination particles (identified by their chemica...
Ice nucleating particles are necessary for formation of ice crystals in mixed-phase clouds, but ther...
During the winter of 2013 and 2014 measurements of cloud microphysical properties over a 5-week peri...
Ice nucleation is the source of primary ice crystals in mixed-phase clouds. Only a small fraction of...
Ice particle residuals (IRs) and the total aerosol particle population were sampled in parallel dur...
During an intensive campaign at the high alpine research station Jungfraujoch, Switzerland, in Febru...
This paper presents results from the "INUIT-JFJ/CLACE 2013" field campaign at the high alpine resear...
Two different single particle mass spectrometers were operated in parallel at the Swiss High Alpine ...
During January/February 2013, at the High Alpine Research Station Jungfraujoch a measurement campaig...
In the present work, three different techniques are used to separate ice-nucleating particles (INP) ...
In situ single particle analysis of ice particle residuals (IPRs) and out-of-cloud aerosol particles...
Primary ice formation in mixed-phase clouds is initiated by a minute subset of the ambient aerosol p...
Ice residual (IR) and total aerosol properties were measured in mixed-phase clouds (MPCs) at the hig...
In-situ single particle analysis of ice particle residuals (IPR) and out-of-cloud aerosol particles ...
Ice nucleating particles are necessary for formation of ice crystals in mixed-phase clouds, but ther...
During the winter of 2013 and 2014 measurements of cloud microphysical properties over a 5-week peri...
Ice nucleation is the source of primary ice crystals in mixed-phase clouds. Only a small fraction of...
Ice particle residuals (IRs) and the total aerosol particle population were sampled in parallel dur...
During an intensive campaign at the high alpine research station Jungfraujoch, Switzerland, in Febru...
This paper presents results from the "INUIT-JFJ/CLACE 2013" field campaign at the high alpine resear...
Two different single particle mass spectrometers were operated in parallel at the Swiss High Alpine ...
During January/February 2013, at the High Alpine Research Station Jungfraujoch a measurement campaig...
In the present work, three different techniques are used to separate ice-nucleating particles (INP) ...
In situ single particle analysis of ice particle residuals (IPRs) and out-of-cloud aerosol particles...
Primary ice formation in mixed-phase clouds is initiated by a minute subset of the ambient aerosol p...
Ice residual (IR) and total aerosol properties were measured in mixed-phase clouds (MPCs) at the hig...
In-situ single particle analysis of ice particle residuals (IPR) and out-of-cloud aerosol particles ...
Ice nucleating particles are necessary for formation of ice crystals in mixed-phase clouds, but ther...
During the winter of 2013 and 2014 measurements of cloud microphysical properties over a 5-week peri...
Ice nucleation is the source of primary ice crystals in mixed-phase clouds. Only a small fraction of...