activity
20242026
collaborators

6 papers

astro-ph.HE2026

Exploring Physics beyond the Standard Model from kHz-Gravitational-Wave Signals of Core-Collapse Supernovae

Kei Kotake, Takami Kuroda

Recent advances in multidimensional modeling of core-collapse supernovae (CCSNe) have enabled detailed predictions of high-frequency gravitational-wave (GW) signals, offering a new…

astro-ph.HE2026

Rotation-induced Relaxation of Supernova Constraints on Axionlike Particles

Tsurugi Takata, Kanji Mori, Ko Nakamura +1

We study how rotation modifies the constraints on MeV-scale axion-like particles (ALPs) coupled to photons derived from SN 1987A. We constrain the ALP parameter space based on both…

astro-ph.HE2026

Circular polarization of gravitational waves from magnetorotational supernovae

Shota Shibagaki, Tomoya Takiwaki, Kei Kotake +2

Context. Gravitational waves (GWs) provide a unique probe of the explosion mechanism of massive stars and the evolution of nascent proto-neutron stars (PNSs). Magnetorotational exp…

astro-ph.HE2026

The diffuse supernova neutrino background: an update with modern population synthesis and core-collapse simulations

Cecilia Lunardini, Tomoya Takiwaki, Tomoya Kinugawa +2

We present a new, state-of-the-art computation of the Diffuse Supernova Neutrino Background (DSNB), where we use neutrino spectra from multi-dimensional, multi-second core collapse…

astro-ph.HE2025

Three-dimensional core-collapse supernova models with phenomenological treatment of neutrino flavor conversions

Kanji Mori, Tomoya Takiwaki, Kei Kotake +1

We perform three-dimensional supernova simulations with a phenomenological treatment of neutrino flavor conversions. We show that the explosion energy can increase to as high as ~1…

astro-ph.HE2024

Three-dimensional Magneto-hydrodynamic Simulations of Core-collapse Supernovae: I. Hydrodynamic evolution and protoneutron star properties

Ko Nakamura, Tomoya Takiwaki, Jin Matsumoto +1

We present results from three-dimensional, magnetohydrodynamic, core-collapse simulations of sixteen progenitors following until 0.5 s after bounce. We use non-rotating solar-metal…