Dr. habil. Miklós Szakáll

Peer-reviewed publications

Hiranuma, N., ..., M. Szakáll, et al.: „A comprehensive characterization of ice nucleation by three different types of cellulose particles immersed in water”
Atmos. Chem. Phys., 19, 4823–4849 (2019)

DeMott, P. J., O. Möhler, D. J. Cziczo, N. Hiranuma, M. D. Petters, S. S. Petters,..., M. Szakáll, et al.: „The Fifth International Workshop on Ice Nucleation phase 2 (FIN-02). Laboratory intercomparison of ice nucleation measurements”
Atmos. Meas. Tech. 11 (11), 6231–6257. doi: 10.5194/amt-11-6231-2018 (2018)

Heymsfield, A., M. Szakáll, A. Jost, I. Giammanco, R. Wright, „A comprehensive observational study of graupel and hail terminal velocity, mass flux, and kinetic energy”
J. Atmos. Sci., 75 (11), 3861-3885 (2018)

M. Szakáll, I. Urbich, “Wind tunnel study on the size distribution of droplets after collision induced breakup of levi-tating water drops”
Atmos. Res., 213, 51-56 (2018)

A. Jost, M. Szakáll, K. Diehl, S. K. Mitra, S. Borrmann, „Chemistry of riming: the retention of organic and inorganic atmospheric trace constituents“
Atmos. Chem. Phys., 17, 9717-9732 (2017)

M. Szakáll, S. Kessler, K. Diehl, S. K. Mitra, S. Borrmann, “A Wind Tunnel Study of the Effects of Collision Processes on the Shape and Oscillation for Moderate-Size Raindrops”
Atmos. Res. 142, 67-78 (2014)

S. Müller, M. Szakáll, S. K. Mitra, K. Diehl, S. Borrmann, „Shapes and oscillations of raindrops with reduced surface tensions: Measurements at the Mainz vertical wind tunnel”
Atmos. Res., 119, 38-45, doi: 10.1016/j.atmosres.2011.05.008 (2013)

K. Diehl, S. K. Mitra, M. Szakáll, N. von Blohn, S. Borrmann, H. R. Pruppacher “The Mainz Vertical Wind Tunnel Facility – A Review of 25 Years of Laboratory Experiments on Cloud Physics and Chemistry”
in Wind Tunnels: Aerodynamics, Models and Experiments (ed.J. D. Pereira), ISBN 978-1-61209-204-1, pp. 69-92, Nova Science Publishers Inc., Hauppauge (2011)

M. Szakáll, S. K. Mitra, K. Diehl, S. Borrmann, “Shapes and oscillations of falling raindrops – A review”
Atmos. Res. 97, 416-425 (2010)

D. Schäuble, C. Voigt, B. Kärcher, P. Stock, H. Schlager, M. Krämer, C. Schiller, R. Bauer, N. Spelten, M. de Reus, M. Szakáll, S. Borrmann, U. Weers, Th. Peter, “Airborne measurements of the nitric acid partitioning in persistent contrails”
Atmos. Chem. Phys. 9, 8189-8197 (2009)

M. Thurai, M. Szakáll, V. N. Bringi, K. V. Beard, S. K. Mitra, S. Borrmann, “Drop shapes and axis ratio distributions: Comparison between 2-D video disdrometer and wind-tunnel measurements”
Journal of Atmospheric and Oceanic Technology 26 (7), 1447-1452 (2009)

M. Szakáll, K. Diehl, S. K. Mitra, S. Borrmann,
“A wind tunnel study on the shape, oscillation and internal circulation of large raindrops with sizes between 2.5 and 7.5 mm ”
J. Atmos. Sci. 66(3) 755-765 (2009)

M. Szakáll, J. Csikós, Z. Bozóki, G. Szabó,
“On the temperature dependent characteristics of a photoacoustic water vapor detector for airborne application”
Infrared Physics and Technology 51(2) 113-121 (2007)

A. Varga, Z. Bozóki, M. Szakáll, G. Szabó,
“Photoacoustic system for on-line process monitoring of hydrogen sulfide (H2S) concentration in natural gas streams”
Appl. Phys. B 85 (2-3) 315-321 (2006)

M. Szakáll, H. Huszár, Z. Bozóki, G. Szabó,
“On the pressure dependent sensitivity of a photoacoustic water vapor detector using active laser modulation control”
Infrared Physics and Technology 48 192-201 (2006)

M. Szakáll, Z. Bozóki, Á. Mohácsi, A. Varga, G. Szabó,
“Diode Laser based photoacoustic water vapor detection system for atmospheric research”
Appl. Spectrosc. 58 (7) 792-798 (2004).

Z. Bozóki, M. Szakáll, Á. Mohácsi, G. Szabó, Zs. Bor,
“Diode laser based photoacoustic humidity sensors”
Sensors and Actuators B 91 219-226 (2003).

A. Veres, Z. Bozóki, Á. Mohácsi, M. Szakáll, G. Szabó,
“External cavity diode laser based photoacoustic detection of CO2 at 1.43 um; the effect of molecular relaxation”
Applied Spectroscopy, 57 (8) 900-905 (2003).

M. Szakáll, Z. Bozóki, M. Kraemer, N. Spelten, O. Moehler, U. Schurath,
“Evaluation of a photoacoustic detector for water vapor measurements under simulated tropospheric / lower stratospheric conditions”
Environmental Science and Technology 35 4881-4885 (2001).

Á. Mohácsi, M. Szakáll, Z. Bozóki, G. Szabó, Z. Bor,
“High stability external cavity diode laser system for photoacoustic gas detection”
Laser Physics 10 (JAN-FEB) 378-381 (2000).

Z. Bozóki, J. Sneider, Z. Gingl, Á. Mohácsi, M. Szakáll, Z. Bor and G. Szabó,
“High Sensitivity, Near-Infrared Tuneable Diode Laser Based Photoacoustic Water Vapour Detection System for Automated Operation”
Measurement Science and Technology 10 999-1003 (1999).