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A global study of hygroscopicity-driven light-scattering enhancement in the context of other in situ aerosol optical properties
Titos, G., Burgos, M. A., Zieger, P., Alados-Arboledas, L., Baltensperger, U., Jefferson, A., … Andrews, E. (2021). A global study of hygroscopicity-driven light-scattering enhancement in the context of other in situ aerosol optical properties. Atmospheric Chemistry and Physics, 21(17), 13031-13050. https://doi.org/10.5194/acp-21-13031-2021
A global model-measurement evaluation of particle light scattering coefficients at elevated relative humidity
Burgos, M. A., Andrews, E., Titos, G., Benedetti, A., Bian, H., Buchard, V., … Zieger, P. (2020). A global model-measurement evaluation of particle light scattering coefficients at elevated relative humidity. Atmospheric Chemistry and Physics, 20(17), 10231-10258. https://doi.org/10.5194/acp-20-10231-2020
A European aerosol phenomenology – 6: scattering properties of atmospheric aerosol particles from 28 ACTRIS sites
Pandolfi, M., Alados-Arboledas, L., Alastuey, A., Andrade, M., Angelov, C., Artiñano, B., … Weingartner, E. (2018). A European aerosol phenomenology – 6: scattering properties of atmospheric aerosol particles from 28 ACTRIS sites. Atmospheric Chemistry and Physics, 18(11), 7877-7911. https://doi.org/10.5194/acp-18-7877-2018
Ambient and laboratory observations of organic ammonium salts in PM<sub>1</sub>
Schlag, P., Rubach, F., Mentel, T. F., Reimer, D., Canonaco, F., Henzing, J. S., … Kiendler-Scharr, A. (2017). Ambient and laboratory observations of organic ammonium salts in PM1. Faraday Discussions, 200, 331-351. https://doi.org/10.1039/c7fd00027h
New particle formation in the free troposphere: a question of chemistry and timing
Bianchi, F., Tröstl, J., Junninen, H., Frege, C., Henne, S., Hoyle, C. R., … Baltensperger, U. (2016). New particle formation in the free troposphere: a question of chemistry and timing. Science, 352(6289), 1109-1112. https://doi.org/10.1126/science.aad5456
A review of more than 20 years of aerosol observation at the high altitude research station Jungfraujoch, Switzerland (3580 m asl)
Bukowiecki, N., Weingartner, E., Gysel, M., Coen, M. C., Zieger, P., Herrmann, E., … Baltensperger, U. (2016). A review of more than 20 years of aerosol observation at the high altitude research station Jungfraujoch, Switzerland (3580 m asl). Aerosol and Air Quality Research, 16(3), 764-788. https://doi.org/10.4209/aaqr.2015.05.0305
Reduced anthropogenic aerosol radiative forcing caused by biogenic new particle formation
Gordon, H., Sengupta, K., Rap, A., Duplissy, J., Frege, C., Williamson, C., … Carslaw, K. S. (2016). Reduced anthropogenic aerosol radiative forcing caused by biogenic new particle formation. Proceedings of the National Academy of Sciences of the United States of America PNAS, 113(43), 12053-12058. https://doi.org/10.1073/pnas.1602360113
Chemical and physical influences on aerosol activation in liquid clouds: a study based on observations from the Jungfraujoch, Switzerland
Hoyle, C. R., Webster, C. S., Rieder, H. E., Nenes, A., Hammer, E., Herrmann, E., … Baltensperger, U. (2016). Chemical and physical influences on aerosol activation in liquid clouds: a study based on observations from the Jungfraujoch, Switzerland. Atmospheric Chemistry and Physics, 16(6), 4043-4061. https://doi.org/10.5194/acp-16-4043-2016
Ion-induced nucleation of pure biogenic particles
Kirkby, J., Duplissy, J., Sengupta, K., Frege, C., Gordon, H., Williamson, C., … Curtius, J. (2016). Ion-induced nucleation of pure biogenic particles. Nature, 533(7604), 521-526. https://doi.org/10.1038/nature17953
Ice residual properties in mixed-phase clouds at the high-alpine Jungfraujoch site
Kupiszewski, P., Zanatta, M., Mertes, S., Vochezer, P., Lloyd, G., Schneider, J., … Gysel, M. (2016). Ice residual properties in mixed-phase clouds at the high-alpine Jungfraujoch site. Journal of Geophysical Research D: Atmospheres, 121(20), 12343-12362. https://doi.org/10.1002/2016JD024894
Studying the vertical aerosol extinction coefficient by comparing in situ airborne data and elastic backscatter lidar
Rosati, B., Herrmann, E., Bucci, S., Fierli, F., Cairo, F., Gysel, M., … Baltensperger, U. (2016). Studying the vertical aerosol extinction coefficient by comparing in situ airborne data and elastic backscatter lidar. Atmospheric Chemistry and Physics, 16(7), 4539-4554. https://doi.org/10.5194/acp-16-4539-2016
Vertical profiling of aerosol hygroscopic properties in the planetary boundary layer during the PEGASOS campaigns
Rosati, B., Gysel, M., Rubach, F., Mentel, T. F., Goger, B., Poulain, L., … Baltensperger, U. (2016). Vertical profiling of aerosol hygroscopic properties in the planetary boundary layer during the PEGASOS campaigns. Atmospheric Chemistry and Physics, 16(11), 7295-7315. https://doi.org/10.5194/acp-16-7295-2016
Contribution of new particle formation to the total aerosol concentration at the high-altitude site Jungfraujoch (3580 m asl, Switzerland)
Tröstl, J., Herrmann, E., Frege, C., Bianchi, F., Molteni, U., Bukowiecki, N., … Baltensperger, U. (2016). Contribution of new particle formation to the total aerosol concentration at the high-altitude site Jungfraujoch (3580 m asl, Switzerland). Journal of Geophysical Research D: Atmospheres, 121(19), 11692-11711. https://doi.org/10.1002/2015JD024637
The role of low-volatility organic compounds in initial particle growth in the atmosphere
Tröstl, J., Chuang, W. K., Gordon, H., Heinritzi, M., Yan, C., Molteni, U., … Baltensperger, U. (2016). The role of low-volatility organic compounds in initial particle growth in the atmosphere. Nature, 533(7604), 527-531. https://doi.org/10.1038/nature18271
A European aerosol phenomenology-5: climatology of black carbon optical properties at 9 regional background sites across Europe
Zanatta, M., Gysel, M., Bukowiecki, N., Müller, T., Weingartner, E., Areskoug, H., … Laj, P. (2016). A European aerosol phenomenology-5: climatology of black carbon optical properties at 9 regional background sites across Europe. Atmospheric Environment, 145, 346-364. https://doi.org/10.1016/j.atmosenv.2016.09.035
Sensitivity estimations for cloud droplet formation in the vicinity of the high-alpine research station Jungfraujoch (3580 m a.s.l.)
Hammer, E., Bukowiecki, N., Luo, B. P., Lohmann, U., Marcolli, C., Weingartner, E., … Hoyle, C. R. (2015). Sensitivity estimations for cloud droplet formation in the vicinity of the high-alpine research station Jungfraujoch (3580 m a.s.l.). Atmospheric Chemistry and Physics, 15(18), 10309-10323. https://doi.org/10.5194/acp-15-10309-2015
The Ice Selective Inlet: a novel technique for exclusive extraction of pristine ice crystals in mixed-phase clouds
Kupiszewski, P., Weingartner, E., Vochezer, P., Schnaiter, M., Bigi, A., Gysel, M., … Baltensperger, U. (2015). The Ice Selective Inlet: a novel technique for exclusive extraction of pristine ice crystals in mixed-phase clouds. Atmospheric Measurement Techniques, 8(8), 3087-3106. https://doi.org/10.5194/amt-8-3087-2015
A synthesis of cloud condensation nuclei counter (CCNC) measurements within the EUCAARI network
Paramonov, M., Kerminen, V. M., Gysel, M., Aalto, P. P., Andreae, M. O., Asmi, E., … Sierau, B. (2015). A synthesis of cloud condensation nuclei counter (CCNC) measurements within the EUCAARI network. Atmospheric Chemistry and Physics, 15(21), 12211-12229. https://doi.org/10.5194/acp-15-12211-2015
The white-light humidified optical particle spectrometer (WHOPS) - a novel airborne system to characterize aerosol hygroscopicity
Rosati, B., Wehrle, G., Gysel, M., Zieger, P., Baltensperger, U., & Weingartner, E. (2015). The white-light humidified optical particle spectrometer (WHOPS) - a novel airborne system to characterize aerosol hygroscopicity. Atmospheric Measurement Techniques, 8(2), 921-939. https://doi.org/10.5194/amt-8-921-2015
Single-particle characterization of ice-nucleating particles and ice particle residuals sampled by three different techniques
Worringen, A., Kandler, K., Benker, N., Dirsch, T., Mertes, S., Schenk, L., … Ebert, M. (2015). Single-particle characterization of ice-nucleating particles and ice particle residuals sampled by three different techniques. Atmospheric Chemistry and Physics, 15(8), 4161-4178. https://doi.org/10.5194/acp-15-4161-2015
 

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