ICAPDM · Registering as Listener

International Conference on Astroparticle Physics and Dark Matter

17th Oct – 18th Oct 2026 Raozan Upazila, Bangladesh Standard / Physical Participation
Listener Registration From
$—
$— in person
Registration Benefits:
Official invitation letterIssued automatically after registration
Certificate & digital materialsGet certificate, slides and resource materials
Supporting global researchConnect with researchers across 30+ countries

Select registration mode

Prices are shown before tax and bank charges — no surprises at checkout.

All sessions Networking Certificate Invitation letter Conference kit

Your details

We only need what's required to register and email your confirmation. Everything else is optional.

For Support Please Contact

Coupon code

Have a code? Apply it here — the discount updates the total immediately.

Apply
VISA MC AMEX UPI

Payments encrypted & processed securely. Refundable up to 14 days before the event.

Registration summary

ConferenceICAPDM
ModeStandard / Physical
ParticipationListener
Registration fee$—
Bank charges (5.8%)$—
Discount-$0.00
Total payable $—

Includes all bank processing charges — the amount above is exactly what will be charged. View charge breakdown

Need help?

Contact our registration team:

Benefits of Registering as Listener
Access to Conference Sessions
Networking Opportunities
Certificate of Participation
Invitation Letter Support
Conference Kit / Materials
Access to Keynote Sessions
Conference Session Tracks
SDG Wheel

SDG-Aligned Research Themes

International Conference on Astroparticle Physics and Dark Matter conference tracks support global knowledge exchange, innovation, and sustainable development priorities across diverse disciplines.

SDG 9 - Industry, Innovation and Infrastructure SDG 13 - Climate Action

This track will explore the latest developments in astroparticle physics, focusing on the interplay between cosmic rays and high-energy particles. Researchers are invited to present their findings on novel detection methods and theoretical frameworks.

This session will delve into various candidates for dark matter, including WIMPs and axions, and discuss innovative indirect detection strategies. Contributions that highlight experimental results and theoretical predictions are particularly welcome.

This track will cover the latest theoretical advancements and experimental results in neutrino physics. Topics may include neutrino oscillations, interactions, and their implications for astrophysical phenomena.

This session will focus on gamma-ray astronomy and its role in understanding high-energy astrophysical processes. Presentations may include observational results, data analysis techniques, and theoretical models.

This track will examine the role of cosmic neutrinos in astrophysics, including their sources and implications for our understanding of the universe. Researchers are encouraged to present both theoretical insights and observational data.

This session will explore the implications of gravitational wave detections for astrophysics and cosmology. Topics may include the sources of gravitational waves and their connections to dark matter and energy.

This track will highlight recent innovations in astrophysical detectors and their applications in astroparticle physics. Contributions that showcase new technologies and their impact on data collection are encouraged.

This session will focus on the role of dark energy in cosmology, exploring its implications for the expansion of the universe. Researchers are invited to discuss theoretical models and observational evidence.

This track will investigate particle interactions in extreme astrophysical environments, including supernovae and black hole accretion disks. Presentations may cover both experimental and theoretical approaches.

This session will focus on the development of models and simulations in astroparticle physics. Contributions that demonstrate the application of computational techniques to astrophysical problems are particularly welcome.

This track will explore the significance of cosmic backgrounds, including the cosmic microwave background and neutrino backgrounds, in understanding the universe's evolution. Researchers are encouraged to present both observational data and theoretical analyses.

COPYRIGHT © 2026 International Conference on Astroparticle Physics and Dark Matter. ALL RIGHTS RESERVED