Aligned with
This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.
This track focuses on the structure and dynamics of giant planet magnetospheres, examining their interactions with solar wind and intrinsic magnetic fields. Contributions will explore the implications of these dynamics for planetary atmospheres and potential habitability.
This session addresses the effects of space weather phenomena on planetary atmospheres, including the thermospheric changes induced by solar activity. Papers will discuss the implications for climate change and the habitability of celestial bodies.
This track invites research on auroral phenomena observed on Earth, Jupiter, and Saturn, highlighting the underlying physical processes. Presentations will compare the mechanisms driving auroras across different planetary environments.
This session focuses on the electrodynamic interactions between magnetospheres and ionospheres, emphasizing their role in atmospheric processes. Contributions will explore theoretical models and observational studies that enhance our understanding of these complex systems.
This track examines the role of dusty plasmas in the atmospheres of planets and moons, investigating their formation, dynamics, and impact on atmospheric processes. Research presented will include both experimental and theoretical approaches to understanding these phenomena.
This session will delve into the non-linear plasma physics phenomena occurring in the ionosphere, including wave-particle interactions and turbulence. Papers will highlight recent advancements in modeling and observational techniques.
This track invites discussions on the scientific planning and technological advancements for future planetary science missions. Contributions will focus on mission objectives, instrumentation, and the anticipated impact on our understanding of planetary systems.
This session explores astrophysical processes that influence planetary formation and evolution, including star-planet interactions and the effects of cosmic events. Contributions will provide insights into the broader context of planetary systems within the universe.
This track focuses on the dynamics and composition of planetary atmospheres, emphasizing the interplay between physical processes and chemical reactions. Research presented will cover a range of planetary bodies, including Earth and exoplanets.
This session aims to draw parallels between Earth science and planetary studies, highlighting insights gained from comparative analysis. Contributions will explore geological, atmospheric, and hydrological processes across different planetary bodies.
This track examines the role of geomatics engineering and space engineering in advancing planetary research. Papers will discuss innovative technologies and methodologies that enhance our ability to study and explore planetary environments.