16. Zhou, F., M. Huang, M.Liu, Y. Qian, and Y. Zhu. 2024: Distinct intraseasonal periodicity of Siberian high as modulated by ENSO: dominance of Madden-Julian oscillation. Environ. Res. Lett., 19, 064066.
15. Zhu, Y., P.-C. Hsu*, and Y. Qian, 2024: Influence of Western Pacific Madden–Julian Oscillation on New York City's Record‐Breaking Air Pollution in Early June 2023. Geophys. Res. Lett., 51, e2024GL109061.
14. 徐邦琪, 魏澎, 钱伊恬*, 游立军, 2024: 西北太平洋热带气旋频次的延伸期动力-统计预报方法和评估. 大气科学学报. 47, 60–74. DOI: 10.13878/j.cnki.dqkxxb.202111010
13. Qian Y., P.-C. Hsu*, H. Murakami, G. Zhang, H. Wang, and M. Duan, 2024: Intraseasonal variability of anticyclonic Rossby wave breaking and its impact on tropical cyclone activity over the western North Pacific. J. Climate. 37, 179–197. DOI: 10.1175/JCLI-D-23-0091.1
12. Qian Y., P.-C. Hsu*, H. Murakami, J. Gao, H. Wang, and M. Duan, 2024: Influences of ENSO and intraseasonal oscillations on distinct tropical cyclone clusters over the western North Pacific. Clim. Dyn., 62, 1861-1885. DOI: 10.1007/s00382-023-07000-5.
11. Qian, Y., P.-C. Hsu*, J. Yuan, Z. Zhu, H. Wang, and M. Duan, 2022: Effects of subseasonal variation in the East Asian monsoon system on the summertime heat wave in western North America in 2021, Geophys. Res. Lett., 49, e2021GL097659. DOI: 10.1029/2021GL097659.
10. Qian, Y., P.-C. Hsu*, H. Wang, and M. Duan, 2022: Distinct influential mechanisms of the warm pool Madden-Julian Oscillation on persistent extreme cold events in Northeast China. Atmos. Oceanic. Sci. Lett., 15, 100226. DOI: 10.1016/j.aosl.2022.100226
9. Qian, Y., P.-C. Hsu*, H. Murakami, B. Xiang and L. You, 2020: A hybrid dynamical-statistical model for advancing subseasonal tropical cyclone prediction over the western North Pacific. Geophys. Res. Lett., 47, e2020GL090095, DOI: 10.1029/2020GL090095.
8. Qian, Y., H. Murakami*, P. -C. Hsu*, and S. B. Kapnick, 2020: Effect of anthropogenic forcing and natural variability on the occurrence of the 2018 heatwave in Northeast Asia. [in “Explaining Extremes of 2018 from a Climate Perspective”]. Bull. Amer. Meteor. Soc., 101, S77–S82.
7. Hsu, P. -C.*, Y. Qian, Y. Liu, H. Murakami, and Y. Gao, 2020: Role of abnormally enhanced MJO over the Western Pacific in the formation and subseasonal predictability of the record-breaking Northeast Asian heatwave in the summer of 2018. J. Climate, 33, 3333–3349.
6. Qian, Y., H. Murakami*, M. Nakano, P.-C. Hsu*, T. L. Delworth, S. B. Kapnick, et al. 2019: On the mechanisms of the active 2018 tropical cyclone season in the North Pacific. Geophys. Res. Lett., 46, 12293–12302.
5. Qian, Y., P.-C. Hsu* and K. Kikuchi, 2019: New real-time indices for the Quasi-Biweekly Oscillation over the Asian summer monsoon region. Clim. Dyn., 53, 2603–2624.
4. Zhou H., P.-C. Hsu* and Y. Qian, 2018: Close linkage between quasi-biweekly oscillation and tropical cyclone intensification over the western North Pacific. Atmos. Sci. Lett., 19, e826.
3. Hsu, P.-C.*, T.-H. Lee, C.-H. Tsou, P.-S. Chu, Y. Qian and M. Bi, 2017: Role of scale interactions in the abrupt change of tropical cyclone in autumn over the Western North Pacific. Clim. Dyn., 49, 3175–3192.
2. Qian, Y., P.-C. Hsu* and C.-H. Cheng, 2017: Changes in surface energy partitioning in China over the past three decades. Adv. Atmos. Sci., 34, 635–649.
1. 钱伊恬,徐邦琪* 2016: 2015年西北太平洋台风季提早展开:2015/2016超级厄尔尼诺的影响. 大气科学学报,39(6): 788–800. doi:10.13878/j.cnki.dqkxxb.20161012010.