24–29 Apr 2025
国科大杭州高等研究院 Hangzhou Institute for Advanced Study (UCAS)
Asia/Shanghai timezone

Mapping the QCD Phase Diagram via Holography

Not scheduled
30m

Speaker

Song He (Ningbo University)

Description

The QCD phase diagram is crucial for understanding strongly interacting matter under extreme conditions, with major implications for cosmology, neutron stars, and heavy-ion collisions. We present a novel holographic QCD model utilizing neural ordinary differential equations (ODEs) to map the QCD phase diagram under magnetic field BB, baryon chemical potential μBμB​, and temperature TT. By solving the inverse problem of constructing the gravitational theory from Lattice QCD data, we reveal an unprecedentedly rich phase structure at finite B, including discovering multiple critical endpoints (CEPs) under strong magnetic fields. Specifically, for {B=1.618 GeV2=2.592×1019B=1.618GeV2=2.592×1019 Gauss}, we identify two distinct CEPs at (TC=87.3 MeV, μC=115.9 MeV)(TC​=87.3MeV,μC​=115.9MeV) and (TC=78.9 MeV, μC=244.0 MeV)(TC​=78.9MeV,μC​=244.0MeV). Notably, the critical exponents vary depending on the CEP's location. These findings significantly advance our understanding of the QCD phase structure and provide concrete predictions for experimental validation at upcoming facilities such as FAIR, JPARC-HI, and NICA.

Author

Song He (Ningbo University)

Presentation materials

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