Mariko Kato
0000-0002-8522-8033
117 papers found
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An X-Ray and Optical Light Curve Model of the Eclipsing Symbiotic Binary Smc3
FINAL FATES OF ROTATING WHITE DWARFS AND THEIR COMPANIONS IN THE SINGLE DEGENERATE MODEL OF TYPE Ia SUPERNOVAE
Evolution of the Symbiotic Nova Pu Vul—outbursting White Dwarf, Nebulae, and Pulsating Red Giant Companion
An Extremely Massive White Dwarf of the Symbiotic Classical Nova V407 Cyg as Suggested by the RS Oph and U SCO Models
A Composite Light Curve Model of the Symbiotic Nova Pu Vul (1979)
Recurrent novae as progenitors of Type Ia supernovae
A SINGLE DEGENERATE PROGENITOR MODEL FOR TYPE Ia SUPERNOVAE HIGHLY EXCEEDING THE CHANDRASEKHAR MASS LIMIT
Effects of a Companion Star on Slow Nova Outbursts—transition From Static to Wind Evolutions
Novae and Accreting White Dwarfs as Progenitors of Type Ia Supernovae
Why are Supersoft X-ray Fluxes So Weak in Early-type Galaxies? – A Clue to Type Ia SNe Progenitors –
A Single Degenerate Model for Ultra Super-Chandrasekhar Mass Progenitors of Type Ia Supernovae – Young and Low Metallicity Environments –
A LIGHT-CURVE MODEL OF THE SYMBIOTIC NOVA PU Vul (1979): A VERY QUIET EXPLOSION WITH LONG-LASTING FLAT PEAK
SUPERSOFT X-Ray PHASE OF SINGLE DEGENERATE TYPE Ia SUPERNOVA PROGENITORS IN EARLY-TYPE GALAXIES
Accreting white dwarfs as supersoft X-ray sources
A Prediction Formula of Supersoft X-Ray Phase of Classical Novae
A Universal Decline Law of Classical Novae. Iv. V838 Her (1991): A Very Massive White Dwarf
Multiplicity of Nova Envelope Solutions and Occurrence of Optically Thick Winds
Optical and Supersoft X-Ray Light-Curve Models of Classical Nova V2491 Cygni: A New Clue to the Secondary Maximum
Progenitors of Type Ia Supernovae: Single Degenerate and Double Degenerates
A Universal Decline Law of Classical Novae. III. GQ Muscae 1983
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