Theory of tropical cyclone frequency
Hsieh, Tsung-Lin, Bosong Zhang, Wenchang Yang, Gabriel A. Vecchi, Ming Zhao, Brian J. Soden, and Chenggong Wang. “The Influence of Large-Scale Radiation Anomalies on Tropical Cyclone Frequency.” Journal of Climate (2023).
Hsieh, Tsung‐Lin, Wenchang Yang, Gabriel A. Vecchi, and Ming Zhao. "Model Spread in the Tropical Cyclone Frequency and Seed Propensity Index Across Global Warming and ENSO‐Like Perturbations." Geophysical Research Letters 49, no. 7 (2022): e2021GL097157.
Yang, Wenchang, Tsung-Lin Hsieh, and Gabriel A. Vecchi. "Hurricane annual cycle controlled by both seeds and genesis probability." Proceedings of the National Academy of Sciences 118, no. 41 (2021): e2108397118.
Hsieh, Tsung-Lin, Gabriel A. Vecchi, Wenchang Yang, Isaac M. Held, and Stephen T. Garner. "Large-scale control on the frequency of tropical cyclones and seeds: a consistent relationship across a hierarchy of global atmospheric models." Climate Dynamics 55, no. 11 (2020): 3177-3196.
Influence of cloud microphysics on tropical cyclone intensification
Mascio, Jeana, Greg M. McFarquhar, Tsung‐Lin Hsieh, Matt Freer, Amanda Dooley, and Andrew J. Heymsfield. "The use of gamma distributions to quantify the dependence of cloud particle size distributions in hurricanes on cloud and environmental conditions." Quarterly Journal of the Royal Meteorological Society 146, no. 730 (2020): 2116-2137.
McFarquhar, Greg M., Brian F. Jewett, Matthew S. Gilmore, Stephen W. Nesbitt, and Tsung-Lin Hsieh. "Vertical velocity and microphysical distributions related to rapid intensification in a simulation of Hurricane Dennis (2005)." Journal of the atmospheric sciences 69, no. 12 (2012): 3515-3534.