SOURCE-LINKED INTELLIGENCE
Cosmological phase transitions of Standard Model Matter and their gravitational wave signatures
emperature. The computational effort of the combined treatment of these forces is immense – we will overcome these challenges by employing optimized algorithms and cutting-edge technologies including machine learning methods. For both systems, we will determine the nature of the high-temperature transition and analyze the induced gravitational wave spectrum. Our results will provide the most accurate description of Standard Model matter in the early Universe. quantum field theory, lattice gauge theory, lattice Quantum Chromodynamics, thermal field theory, phase transitions and critical phenomena, Monte-Carlo algorithms, high-performance computing, cosmological phase transitions
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- recordType
- award
- status
- SIGNED
- region
- EU
- value
- 1839769
- unit
- EUR
Evidence & attribution
European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.
License: CORDIS reuse policy
First collected: 2026-09-20T02:21:08.944Z. This is not the publication date.