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International Conference on Nuclear Astrophysics and Stellar Evolution

ICNASE

1st Apr – 2nd Apr 2027 Antalya, Turkey

Official Invitation Letter Available

An official invitation letter will be provided upon successful registration for your participation in the conference.

Benefits of Registering as Listener

Access to All Conference Sessions

Plenary, keynote and parallel sessions

Networking Opportunities

Connect with global educators & researchers

Certificate of Participation

Digital certificate of participation

Invitation Letter Support

Official invitation letter after successful registration

Conference Kit / Digital Materials

E-proceedings & resource materials

Access to Keynote Sessions

Learn from leading experts & scholars

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Terms & Condition

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Conference Session Tracks

UN SDG Wheel

Aligned with UN Sustainable Development Goals

The conference's session tracks effectively support the following SDGs.

SDG 4 SDG 9 SDG 12 SDG 13
01 Nuclear Reactions in Stellar Environments +
This track focuses on the fundamental nuclear processes that occur within stars, including fusion and fission reactions. Participants will discuss the implications of these reactions for stellar evolution and nucleosynthesis.
SDG 9 SDG 13
02 Stellar Modeling and Simulations +
This session will explore advanced computational techniques used to model stellar interiors and evolution. Emphasis will be placed on the accuracy of simulations in predicting stellar behavior and nucleosynthesis outcomes.
SDG 4 SDG 9
03 Observational Astrophysics of Supernovae +
This track will cover the latest observational techniques and findings related to supernovae, including their role in cosmic nucleosynthesis. Discussions will include the implications of supernova observations for our understanding of stellar evolution.
SDG 9 SDG 13
04 Neutron Stars and Their Astrophysical Significance +
Participants will delve into the unique properties of neutron stars and their formation processes. The track will also address their role in the broader context of stellar evolution and nucleosynthesis.
SDG 9 SDG 13
05 Gamma-Ray Astronomy and Cosmic Nucleosynthesis +
This session will focus on the contributions of gamma-ray astronomy to our understanding of nucleosynthesis in the universe. Key topics will include the detection of gamma-ray emissions from various astrophysical sources.
SDG 9 SDG 13
06 Isotopic Abundances in Stellar Environments +
This track will investigate the isotopic compositions produced in different stellar environments and their significance for understanding stellar evolution. Participants will discuss methods for measuring isotopic abundances and their implications for nucleosynthesis theories.
SDG 9 SDG 12
07 Astrophysical Plasmas and Stellar Dynamics +
This session will explore the role of plasmas in stellar environments, including their impact on stellar dynamics and nucleosynthesis. Discussions will include the interaction of magnetic fields and plasma flows in stellar interiors.
SDG 9 SDG 13
08 Stellar Evolution Theory: Past, Present, and Future +
This track will provide a comprehensive overview of the theoretical frameworks that underpin our understanding of stellar evolution. Participants will discuss recent advancements and future directions in stellar evolution theory.
SDG 4 SDG 9
09 Element Formation in the Universe +
This session will focus on the processes that lead to the formation of elements in stars and during explosive events like supernovae. Discussions will include the implications of these processes for the chemical evolution of galaxies.
SDG 9 SDG 12
10 Reaction Rates in Stellar Nucleosynthesis +
This track will examine the importance of reaction rates in the context of stellar nucleosynthesis. Participants will discuss experimental and theoretical approaches to determining these rates and their implications for stellar models.
SDG 9 SDG 12
11 Star Formation and Its Impact on Stellar Evolution +
This session will explore the processes of star formation and how they influence subsequent stellar evolution. Discussions will include the interplay between initial conditions and the resulting stellar characteristics.
SDG 4 SDG 9