Publications

2020, Nedoluha, G.E., et al., Initial Results and Diurnal Variations Measured by a new Microwave Stratospheric ClO Instrument at Mauna Kea, Journal of Geophysical Research, https://doi.org/10.1029/2020JD033097
Tags: ClO, Diurnal, Microwave

2018, Geddes, A., et al., Python-based dynamic scheduling assistant for atmospheric measurements by Bruker instruments using OPUS, Applied Optics, 57(4), 689-691
Tags: Algorithm, FTIR

2016, Zhao, X., K. Strong, C. Adams, R. Schofield, X. Yang, A. Richter, U. Friess, A.M. Blechschmidt, and J.H. Koo, A case study of a transported bromine explosion event in the Canadian high Arctic, Journal of Geophysical Research, 121, 457-477
Tags: BrO, Sonde, UVVis

2016, Sica, R.J., A. Haefele, Retrieval of water vapor mixing ratio from a multiple channel Raman-scatter lidar using an optimal estimation method, Applied Optics, 55, 763-777
Tags: H2O, Lidar

2015, Sica, R., Haefele, A., Retrieval of temperature from a multiple-channel Rayleigh-scatter lidar using an optimal estimation method, Applied Optics, 54, 1872–1889
Tags: Lidar, Temperature

2015, Schoeberl, M., H. Selkirk, A. Douglass, and H Vömel, Sources of Seasonal Variability in Tropical UTLS Water Vapor and Ozone: Inferences from the Ticosonde Dataset at Costa Rica, Journal of Geophysical Research, 120, 9684–9701, https://doi.org/10.1002/2015JD023299
Tags: H2O, Ozone, Sonde

2013, Nedoluha, G.E., et al., Validation of long term Measurements of Water Vapor from the mid-Stratosphere to the Mesosphere at two NDACC Sites, Journal of Geophysical Research, 118, 934-942, http://doi.org/10.1029/2012JD018900
Tags: H2O, Microwave, Validation

2013, Nedoluha, G.E., R. M. Gomez, D. R. Allen, A. Lambert, C. Boone, and G. Stiller, Variations in Middle Atmospheric Water Vapor form 2004-2013, Journal of Geophysical Research, 118, 11,285–11,293, https://doi.org/10.1002/jgrd.50834
Tags: H2O, Microwave

2013, Kuang, S., M. J. Newchurch, J. Burris, and X. Liu, Ground-based lidar for atmospheric boundary layer ozone measurements, Applied Optics, 52, 3557-3566
Tags: Lidar, Ozone

2012, Thompson, A.M., Miller, S. K., Tilmes, S., Kollonige, D. W., Witte, J. C., Oltmans, S. J., Johnson, B. J., Fujiwara, M., Schmidlin, F. J., Coetzee, G. J. R., Komala, N., Maata, M., bt Mohamad, M., Nguyo, J., Mutai, C., Ogino, S-Y., Raimundo Da Silva, F., Paes Leme, N. M., Posny, F., Scheele, R., Selkirk, H. B., Shiotani, M., Stübi, R., Levrat, G., Calpini, B., Thouret, V., Tsuruta, H., Valverde Canossa, J., Vömel, H., Yonemura, S., Andrés Diaz, J., Tan Thanh, N. T., and Thuy Ha, H. T., Southern Hemisphere Additional Ozonesondes (SHADOZ) ozone climatology (2005–2009): Tropospheric and tropical tropopause layer (TTL) profiles with comparisons to OMI based ozone products, Journal of Geophysical Research, 117, D23301, https://doi.org/10.1029/2011JD016911
Tags: Ozone, Satellite, Sonde