Saturnalia 2025
from
Tuesday, 16 December 2025 (09:00)
to
Friday, 19 December 2025 (19:00)
Monday, 15 December 2025
Tuesday, 16 December 2025
11:30
Stripped-Envelope Supernovae for QCD Axion Detection
-
Francisco Rodríguez Candón
(
Universidad de Zaragoza
)
Stripped-Envelope Supernovae for QCD Axion Detection
Francisco Rodríguez Candón
(
Universidad de Zaragoza
)
11:30 - 12:00
Room: Seminario de Física Atómica, Nuclear y Molecular
The QCD axion, arising from the Peccei–Quinn solution to the strong-CP problem, remains one of the most compelling candidates for physics beyond the Standard Model and for the dark matter of the Universe. Core-collapse galactic supernovae provide exceptional laboratories for probing such particles, as the extreme densities and temperatures inside the proto-neutron star lead to copious axion emission. The only “close” supernova observed in modern times, SN 1987A, occurred not in the Milky Way but in the Large Magellanic Cloud at 51 kpc. Despite the limited sensitivity of the only γ-ray telescope operating back then, Solar Maximum Mission (SMM), constraints on axions and axion-like particles ALPs derived from that event are still among the most competitive. Today, γ-ray telescopes such as Fermi-LAT offer nearly two orders of magnitude greater effective area, making the next Galactic supernova a realistic discovery opportunity. Axions produced during the cooling phase can convert into ~100 MeV photons in the progenitor star’s own magnetic field. In this talk, I will show that stripped-envelope Type Ibc supernovae, which are compact and possess strong surface magnetic fields, provide the optimal conditions for a possible QCD axion detection.
12:00
Detecting axion dark matter with resonant cavities: The RADES Collaboration
-
Cristian Cogollos Triviño
Detecting axion dark matter with resonant cavities: The RADES Collaboration
Cristian Cogollos Triviño
12:00 - 12:30
Room: Seminario de Física Atómica, Nuclear y Molecular
12:30
Multiple ALPs in Laboratory Experiments
-
Sebastian Monath
(
University of Heidelberg
)
Multiple ALPs in Laboratory Experiments
Sebastian Monath
(
University of Heidelberg
)
12:30 - 13:00
Room: Seminario de Física Atómica, Nuclear y Molecular
Wednesday, 17 December 2025
11:30
ANAIS-112: Eight Years Searching for Dark Matter Annual Modulation at LSC
-
Iván Coarasa Casas
(
CAPA, Universidad de Zaragoza
)
ANAIS-112: Eight Years Searching for Dark Matter Annual Modulation at LSC
Iván Coarasa Casas
(
CAPA, Universidad de Zaragoza
)
11:30 - 12:00
Room: Seminario de Física Atómica, Nuclear y Molecular
12:00
Casimir Energy in Non-Abelian Gauge Theories
-
Fernando Ezquerro
(
CAPA, Universidad de Zaragoza
)
Casimir Energy in Non-Abelian Gauge Theories
Fernando Ezquerro
(
CAPA, Universidad de Zaragoza
)
12:00 - 12:30
Room: Seminario de Física Atómica, Nuclear y Molecular
12:30
Prospects of CMB B-modes with future CMB and large-scale structure experiments
-
Chandra Shekhar Saraf
(
Korea Astronomy and Space Science Institute
)
Prospects of CMB B-modes with future CMB and large-scale structure experiments
Chandra Shekhar Saraf
(
Korea Astronomy and Space Science Institute
)
12:30 - 13:00
Room: Seminario de Física Atómica, Nuclear y Molecular
In the era of high precision Cosmic Microwave Background (CMB) anisotropy measurements, detection of primordial B-modes polarisation will be one of the goals of the current and upcoming CMB experiments. In this talk I will present the methodology of detecting B-modes from Simons Observatory-like CMB experiment. I will also discuss how including probes of large scale structure can improve the measurement of tensor-to-scalar ratio.
Thursday, 18 December 2025
12:30
GeV-ALP searches with ALP-aca
-
Jorge Alda
(
Università degli Studi di Padova
)
GeV-ALP searches with ALP-aca
Jorge Alda
(
Università degli Studi di Padova
)
12:30 - 13:00
Room: Seminario de Física Atómica, Nuclear y Molecular
Axion-Like particles (ALPs) are pseudoscalar neutral particles that are predicted by many New Physics theories. The GeV mass range is interesting for several reasons: the constraints in parameter space are weaker, the flavour structure of the couplings to SM fermions plays an important role, and it can be explored by different experiments such as BESIII, Belle II and LHCb. But there is also an important theoretical challenge in the description of ALP processes involving light mesons. In this talk, I will present the code ALP-aca (ALP automatic computing algorithm) that we have developed in order to study the phenomenology of GeV ALPs, and discuss some application in ALPs produced in flavour-changing meson decays, quarkonia decays and proton collisions.
13:00
Axion searches with IAXO: from the Sun to Supernovae
-
María Jiménez Puyuelo
(
Universidad de Zaragoza / CAPA
)
Axion searches with IAXO: from the Sun to Supernovae
María Jiménez Puyuelo
(
Universidad de Zaragoza / CAPA
)
13:00 - 13:30
Room: Seminario de Física Atómica, Nuclear y Molecular
13:30
Taming forward-scattering singularities in partial waves: Is the classical Higgs unitarity bound well defined?
-
Pablo Quílez Lasanta
(
CERN
)
Taming forward-scattering singularities in partial waves: Is the classical Higgs unitarity bound well defined?
Pablo Quílez Lasanta
(
CERN
)
13:30 - 14:00
Room: Seminario de Física Atómica, Nuclear y Molecular
Friday, 19 December 2025
12:30
Scientific Data Management at CERN
-
Luis Antonio Obis Aparicio
(
University of Zaragoza
)
Scientific Data Management at CERN
Luis Antonio Obis Aparicio
(
University of Zaragoza
)
12:30 - 13:00
Room: Seminario de Física Atómica, Nuclear y Molecular
13:00
Characterization of 39Ar Activity for DarkSide-20k with DArTinArDM
-
Swadheen Bharat
(
CAPA, Universidad de Zaragoza
)
Characterization of 39Ar Activity for DarkSide-20k with DArTinArDM
Swadheen Bharat
(
CAPA, Universidad de Zaragoza
)
13:00 - 13:30
Room: Seminario de Física Atómica, Nuclear y Molecular
13:30
Many-body wavefunctions from conformal field theory
-
Adrián Franco Rubio
(
U. Complutense de Madrid
)
Many-body wavefunctions from conformal field theory
Adrián Franco Rubio
(
U. Complutense de Madrid
)
13:30 - 14:00
Room: Seminario de Física Atómica, Nuclear y Molecular
In quantum many-body physics, ansatz wavefunctions and toy models can provide useful information about entanglement patterns and phases of matter. In this talk, we introduce families of spin chain wavefunctions defined in terms of correlators in chiral conformal field theory, which interpolate between well-known gapped and gapless exactly solvable models, and give rise to a certain correspondence between the geometry of the quantum field theory and the entanglement content of the spin chain.