Stellar cooling limits on KK gravitons and dark dimensions

Journal of High Energy Physics Springer 2026:3 (2026) 29

Authors:

Edward Hardy, Anton Sokolov, Henry Stubbs

Abstract:

We revisit cooling bounds on light Kaluza-Klein (KK) gravitons, as arise in the dark dimension scenario, considering globular clusters, neutron stars, and supernovae. In addition to bremsstrahlung, we account for two novel production channels: resonant mixing with the in-medium photon and a pion-induced process in supernovae. The strongest limits arise from SN 1987A, with the emissivity from the pion process exceeding that from bremsstrahlung by a factor of a few albeit with substantial uncertainties, while resonant production is heavily suppressed. We obtain a bound on the KK mass scale of mKK ≳ 0.6 eV (≳ 500 eV) for 2 (3) extra dimensions, which, having accounted for these previously neglected processes, is broadly compatible with existing analyses. Improved understanding of the properties of pions in supernovae could strengthen these limits to roughly eV (keV). For 1 extra dimension, the bounds are weaker than those from laboratory searches. We also show that constraints from KK graviton decays to Standard Model particles are less stringent than the cooling bounds if there is KK number violation at the level typically assumed in the dark dimension scenario, although these bounds could be strengthened by future observations.

The COSMIC WISPers White Paper: The physics case for Weakly Interacting Slim Particles

ArXiv 2603.03433 (2026)

Authors:

Ariel Arza, Deniz Aybas, Shyam Balaji, Reuven Balkin, Kai Bartnick, Charles FA Baynham, Itay M Bloch, Claudio Bonati, Dmitry Budker, Clare Burrage, Malte Buschmann, Francesca Calore, Francisco R Candón, Pierluca Carenza, Serkant Ali Cetin, Francesca Chadha-Day, Sreemanti Chakraborti, Kiwoon Choi, Michele Cicoli, Lei Cong, Joseph P Conlon, Florin Lucian Constantin, José Correia, Claudia De Dominicis, Arturo de Giorgi, Pedro De la Torre Luque, Javier De Miguel, Francesco D'Eramo, Alejandro Díaz-Morcillo, Patricia Diego-Palazuelos, David Díez-Ibáñez, Luca Di Luzio, Amelia Drew, Babette Döbrich, Christopher Eckner, Aldo Ejlli, Sebastian AR Ellis, Angelo Esposito, Elisa Ferreira, Nahuel Ferreiro Iachellini, Damiano FG Fiorillo, Matteo Galaverni, Michele Gallinaro, Camilo García-Cely, Silvia Gasparotto, Claudio Gatti, Daniel Gavilan-Martin, Maurizio Giannotti, Benito Gimeno, Marco Gorghetto, Giovanni Grilli di Cortona, Jordan Gué, Gerard Higgins, Dieter Horns, Mathieu Kaltschmidt, Marin Karuza, Venelin Kozhuharov, Stepan Kunc, Francesca Lecce, Alessandro Lella, Axel Lindner, Maria Paola Lombardo, Giuseppe Lucente, Olympia Maliaka, Cristina Margalejo, Marios Maroudas, Luca Marsicano, Luca Merlo, Alessandro Mirizzi, Vasiliki A Mitsou, Guido Mueller, Kai Murai, Toshiya Namikawa, Fumihiro Naokawa, Le Hoang Nguyen, Ciaran O'Hare, Tomas O'Shea, Ippei Obata, Ali Övgün, Francisco Gil Pedro, Giovanni Pierobon, Tanmay Kumar Poddar, Josef Pradler, Pierre Pugnat, Beyhan Puliçe, Raquel Quishpe, Georg G Raffelt, Maria Ramos, Wolfram Ratzinger, Marco Regis, Mario Reig, Sophie Renner, Alessio Rettaroli, Nicole Righi, Andreas Ringwald, Laura R Roberts, Keir K Rogers, Qazal Rokn, Ophir M Ruimi, Jaime Ruz, Kenichi Saikawa, Marco Scalisi, Andreas Schachner, Joern Schaffran, Kristof Schmieden, Matthias Schott, Javi Serra, Anton Sokolov, Paolo Spagnolo, Konstantin Springmann, Michael Staelens, Stefan Stelzl, Oscar Straniero, Marco Taoso, Elisa Todarello, Claudio Toni, Lorenzo Ubaldi, Federico Urban, Rodrigo Vicente, Luca Visinelli, Edoardo Vitagliano, Julia K Vogel, Andreas Weiler, Samuel J Witte, Michael Wurm, Wen Yin, Konstantin Zioutas

Measurement of ion acceleration and diffusion in a laser-driven magnetized plasma

Nature Communications Nature Research (2026)

Authors:

JTY Chu, JWD Halliday, C Heaton, K Moczulski, A Blazevic, D Schumacher, M Metternich, H Nazary, CD Arrowsmith, AR Bell, KA Beyer, AFA Bott, T Campbell, E Hansen, DQ Lamb, F Miniati, P Neumayer, CAJ Palmer, B Reville, A Reyes, S Sarkar, A Scopatz, C Spindloe, CB Stuart, H Wen, P Tzeferacos, R Bingham, G Gregori

Abstract:

Here we present results from an experiment performed at the GSI Helmholtz Center for Heavy Ion Research. A mono-energetic beam of chromium ions with initial energies of  ~ 450 MeV was fired through a magnetized interaction region formed by the collision of two counter-propagating laser-ablated plasma jets. While laser interferometry revealed the absence of strong fluid-scale turbulence, acceleration and diffusion of the beam ions was driven by wave-particle interactions. A possible mechanism is particle acceleration by electrostatic, short scale length kinetic turbulence, such as the lower-hybrid drift instability.

Probing the Dark Matter EFT with QUEST-DMC: Projected Sensitivities and Attenuation Ceilings

(2026)

Authors:

DMC Collaboration, N Darvishi, S Autti, L Bloomfield, A Casey, N Eng, P Franchini, RP Haley, PJ Heikkinen, A Jennings, A Kemp, E Leason, J March-Russell, A Mayer, J Monroe, D Munstermann, MT Noble, JR Prance, X Rojas, T Salmon, J Saunders, J Smirnov, R Smith, MD Thompson, A Thomson, A Ting, V Tsepelin, SM West, L Whitehead, DE Zmeev

A Search for Millimeter-bright Blazars as Astrophysical Neutrino Sources

The Astrophysical Journal American Astronomical Society 999:1 (2026) 98

Authors:

R Abbasi, M Ackermann, J Adams, SK Agarwalla, JA Aguilar, M Ahlers, JM Alameddine, NM Amin, K Andeen, C Argüelles, Y Ashida, S Athanasiadou, SN Axani, R Babu, X Bai, J Baines-Holmes, A Balagopal V., SW Barwick, S Bash, V Basu, R Bay, JJ Beatty, J Becker Tjus, P Behrens

Abstract:

The powerful jets of blazars have been historically considered as likely sites of high-energy cosmic-ray acceleration. However, the particulars of the launched jet and the locations of leptonic and hadronic jet loading remain unclear. In the case when leptonic and hadronic particle injection occur jointly, a temporal correlation between synchrotron radiation and neutrino production is expected. We use a first catalog of millimeter wavelength (95–225 GHz) blazar light curves from the Atacama Cosmology Telescope for a time-dependent correlation with 12 yr of muon neutrino events from the IceCube South Pole Neutrino Observatory. Such millimeter emission traces activity of the bright jet base, which is often self-absorbed at lower frequencies and potentially gamma-ray opaque. We perform an analysis of the population, as well as analyses of individual, selected sources. We do not observe a significant signal from the stacked population. TXS 0506+056 is found as the most significant, individual source, though this detection is not globally significant in our analysis of selected active galactic nuclei. Our results suggest that the majority of millimeter-bright blazars are neutrino dim. In general, it is possible that many blazars have lighter, leptonic jets, or that only selected blazars provide exceptional conditions for neutrino production.