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Deep Learning on Type Ia Supernovae - Xingzhuo Chen

Deep Learning on Type Ia Supernovae

(Autor)

Buch | Hardcover
X, 170 Seiten
2026
Springer International Publishing (Verlag)
978-3-032-13031-0 (ISBN)
CHF 194,70 inkl. MwSt
  • Noch nicht erschienen - erscheint am 30.01.2026
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The thesis presents the design of an Artificial Intelligence Assisted Inversion (AIAI) method to estimate type Ia supernova (SN Ia) ejecta structure based on the observed optical spectral time sequence. The research applied neural networks to 126 SNe Ia and found a correlation between the 3700 Å spectral feature and the 56Ni elemental abundance. To further adapt the AIAI method to the SNe Ia 3D structure estimate, the author developed an integral-based technique to significantly increase the signal-to-noise ratio in the polarized time-dependent 3D radiative transfer computations. To understand the SNe Ia progenitors, the spatially resolved SN Ia host galaxy spectra from MUSE and MaNGA were employed to estimate the delay time distribution (DTD). By using a grouping algorithm based on k-means and earth mover's distances, the research separated the host galaxy stellar population age distributions into spatially distinct regions and used the maximum likelihood method to constrain the DTD. It was found that the DTD is consistent to the double-degenerate progenitor models.

Dr. Xingzhuo Chen is a theoretical astrophysicist working in the Texas A&M University Institute of Data Science. His research focuses on radiative transfer simulation on supernovae and scientific machine learning on magnetohydrodynamic simulations. He received his Ph.D in Astronomy from Texas A&M University. During his Ph.D, he studied the ejecta structure of type Ia supernovae using deep learning and radiative transfer simulations. 

Introduction and literature review.- Artificial intelligence assisted inversion on type ia supernovae.- Artificial intelligence assisted inversion (aiai): quantifying the spectral features of 56Ni of type Ia supernovae.- An integral-based technique (ibt) to accelerate the monte-carlo radiative transfer computation for supernovae.

Erscheint lt. Verlag 23.4.2026
Reihe/Serie Springer Theses
Zusatzinfo X, 170 p. 40 illus., 20 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Themenwelt Naturwissenschaften Physik / Astronomie Astronomie / Astrophysik
Schlagworte SNe Ia progenitors • star formation histories • supernova analysis with AI • supernova delay time • supernova ejecta stucture • supernova spectra • Type Ia supernova
ISBN-10 3-032-13031-X / 303213031X
ISBN-13 978-3-032-13031-0 / 9783032130310
Zustand Neuware
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Buch | Softcover (2024)
Springer Spektrum (Verlag)
CHF 89,95