Predicting the X-ray signatures of the imminent T Coronae Borealis outburst through 3D hydrodynamic modeling
arXiv:2507.20334 · doi:10.1051/0004-6361/202556617
Abstract
T Coronae Borealis (T CrB) is a symbiotic recurrent nova with eruptions in 1866 and 1946. Mounting evidence suggests an imminent outburst, offering a rare opportunity to observe a nearby nova in detail. We constrain the circumbinary medium (CBM) by modeling inter-eruption radio observations and simulate the hydrodynamic evolution of the upcoming outburst to predict its X-ray signatures, focusing on the roles of the red giant companion, accretion disk, and equatorial density enhancement (EDE). We model thermal radio emission from a CBM composed of a spherical wind and a torus-like EDE to estimate its density. We then perform 3D hydrodynamic simulations of the nova outburst, varying explosion energy, ejecta mass, and CBM configuration. From these, we synthesize X-ray light curves and spectra as they would appear to XMM-Newton and XRISM. The CBM in T CrB is significantly less dense than in other symbiotic novae, with a mass-loss rate of M yr for a 10 km s wind. Despite the low-density EDE, the blast is collimated along the poles by the accretion disk and EDE, producing a bipolar shock. The red giant partially shields the ejecta, forming a bow shock and hot wake. X-ray evolution proceeds through three phases: an early phase (first few hours) dominated by shocked disk material; an intermediate phase ( week-1 month) driven by reverse-shocked ejecta; and a late phase dominated by shocked EDE. Soft X-rays trace shocked ejecta, hard X-rays arise from shocked ambient gas, and synthetic spectra show asymmetric, blueshifted lines due to absorption by expanding ejecta. The X-ray evolution resembles that of RS Oph and V745 Sco, with a peak luminosity of erg s, but features a more prolonged soft X-ray phase, reflecting the lower CBM density and distinct ejecta-environment interaction.
Accepted for publication in A&A
References in corpus (21)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- PLUTO: a Numerical Code for Computational Astrophysics
- A Physical Relationship Between Electron-Proton Temperature Equilibration and Mach Number in Fast Collisionless Shocks
- X-Ray Emitting Blast Wave from the Recurrent Nova RS Ophiuchi
- The Super-Soft X-ray Phase of Nova RS Ophiuchi 2006
- 3D simulations of RS Oph: from accretion to nova blast
- Time-resolved hadronic particle acceleration in the recurrent Nova RS Ophiuchi
- The fully developed remnant of a neutrino-driven supernova: Evolution of ejecta structure and asymmetries in SNR Cassiopeia A
- Proton acceleration in thermonuclear nova explosions revealed by gamma rays
- Comprehensive Catalogue of the Overall Best Distances and Properties of 402 Galactic Novae
- Collisionless shock heating of heavy ions in SN 1987A
- Three-dimensional modeling of the asymmetric blast wave from the 2006 outburst of RS Ophiuchi: Early X-ray emission
- Origin of asymmetries in X-ray emission lines from the blast wave of the 2014 outburst of nova V745 Sco
- T CrB: Radio Observations During the 2016--2017 "Super-Active" State
- Resolving the mass transfer in the symbiotic recurrent nova T Coronae Borealis
- Simulations of the symbiotic recurrent nova V407 Cyg. I. Accretion and shock evolutions
- Detection of RS Oph with LST-1 and modelling of its HE/VHE gamma-ray emission
- T CrB: overview of the accretion history, Roche-lobe filling, orbital solution, and radiative modeling
- Tracing the ejecta structure of SN 1987A: Insights and diagnostics from 3D MHD simulations
- Hydrodynamic simulations of the recurrent nova T Coronae Borealis: Nucleosynthesis predictions