Open Access
Issue
EPJ Web Conf.
Volume 362, 2026
31st International Laser Radar Conference (ILRC 31) Held Together with the 22nd Coherent Laser Radar Conference (CLRC 22)
Article Number 06004
Number of page(s) 4
Section Joint CLRC/ILRC Session: Flux Measurements and Boundary Layer Dynamics
DOI https://doi.org/10.1051/epjconf/202636206004
Published online 09 April 2026
  1. R. B. Stull, An Introduction to Boundary Layer Meteorology, Vol. 13 (Springer Science & Business Media, 1988). [Google Scholar]
  2. A. Behrendt et al., Observation of Convection Initiation Processes with a Suite of State-of-the-Art Research Instruments during COPS IOP 8b, Q. J. R. Meteorol. Soc. 137, 81 (2011). [Google Scholar]
  3. J. A. Santanello, C. D. Peters-Lidard, and S. V. Kumar, Diagnosing the Sensitivity of Local Land–Atmosphere Coupling via the Soil Moisture–Boundary Layer Interaction, J. Hydrometeorol. 12, 766 (2011). [Google Scholar]
  4. V. Wulfmeyer, R. M. Hardesty, D. D. Turner, A. Behrendt, M. P. Cadeddu, P. Di Girolamo, P. Schlüssel, J. Van Baelen, and F. Zus, A Review of the Remote Sensing of Lower Tropospheric Thermodynamic Profiles and Its Indispensable Role for the Understanding and the Simulation of Water and Energy Cycles, Rev. Geophys. 53, 819 (2015). [Google Scholar]
  5. T. Foken, Micrometeorology, 2nd ed. (Springer, Berlin, Heidelberg, 2017). [Google Scholar]
  6. M. Mauder, T. Foken, and J. Cuxart, Surface-Energy-Balance Closure over Land: A Review, Bound.-Layer Meteorol. 177, 395 (2020). [Google Scholar]
  7. F. Späth, A. Behrendt, S. K. Muppa, S. Metzendorf, A. Riede, and V. Wulfmeyer, High-Resolution Atmospheric Water Vapor Measurements with a Scanning Differential Absorption Lidar, Atmospheric Chem. Phys. Discuss. 14, 29057 (2014). [Google Scholar]
  8. D. Lange, A. Behrendt, and V. Wulfmeyer, Compact Operational Tropospheric Water Vapor and Temperature Raman Lidar with Turbulence Resolution, Geophys. Res. Lett. 46, 14844 (2019). [Google Scholar]
  9. H. Vogelmann, J. Speidel, M. Perfahl, and T. Trickl, Transverse-Pumping Approach for a Powerful Single-Mode Ti:Sapphire Laser for near Infrared Lidar Applications, Appl. Opt. 61, 8553 (2022). [Google Scholar]
  10. J. D. Klett, Lidar Inversion with Variable Backscatter/Extinction Ratios, Appl Opt 24, 1638 (1985). [Google Scholar]
  11. J. Speidel and H. Vogelmann, Correct(Ed) Klett–Fernald Algorithm for Elastic Aerosol Backscatter Retrievals: A Sensitivity Analysis, Appl. Opt. 62, 861 (2023). [Google Scholar]
  12. J. Reichardt, U. Wandinger, V. Klein, I. Mattis, B. Hilber, and R. Begbie, RAMSES: German Meteorological Service Autonomous Raman Lidar for Water Vapor, Temperature, Aerosol, and Cloud Measurements, Appl Opt 51, 8111 (2012). [Google Scholar]
  13. C. Hohenegger et al., FESSTVaL: The Field Experiment on Submesoscale Spatio-Temporal Variability in Lindenberg, Bull. Am. Meteorol. Soc. 104, E1875 (2023). [Google Scholar]
  14. A.N. Kolmogorov, The Local Structure of Turbulence in Incompressible Viscous Fluid for Very Large Reynolds Numbers, Proc. R. Soc. Lond. Ser. Math. Phys. Sci. 434, 9 (1991). [Google Scholar]

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