October 12, 2026 to November 13, 2026
YITP, Kyoto University
Asia/Tokyo timezone

First-principles motivated priors for neutron-star equation-of-state inference

Not scheduled
45m
Panasonic Auditorium, Yukawa Hall (YITP, Kyoto University)

Panasonic Auditorium, Yukawa Hall

YITP, Kyoto University

Kitashirakawa Oiwakecho, Sakyo Ward, Kyoto, 606-8267
(3rd week, Oct. 26-30) Symposium YKIS Symposium

Speaker

Oleg Komoltsev (Goethe-Universität Frankfurt am Main)

Description

As our understanding of cold, extremely dense matter grows, a multidisciplinary approach that combines recent progress in multimessenger neutron-star observations with theoretical knowledge of the equation of state (EoS) becomes increasingly essential. In this talk, I present a new physically motivated framework for encoding prior knowledge about dense matter arising from chiral effective field theory and perturbative quantum chromodynamics.

The new method generates model-agnostic, nonparametric priors for neutron-star EoS inference that are stable, causal, and thermodynamically consistent by construction. It is based on constructing constrained Gaussian-process bridges, whose correlation properties can be tuned at will, allowing flexibility between conservative priors and theory-informed priors. Unlike existing nonparametric approaches, it does not rely on shooting procedures, intermediate likelihoods, or ad hoc switching between EoS representations.

Authors

Aleksi Kurkela (University of Stavanger) Eirik Sunde (University of Stavanger) Oleg Komoltsev (Goethe-Universität Frankfurt am Main) Tyler Gorda (The Ohio State University)

Presentation materials

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