Compact objects for everyone: I. White dwarf stars (original) (raw)

S. Chandrasekhar: White Dwarfs, H− ion,.., Black holes, Gravitational waves

Patrick Dasgupta

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S. Chandrasekhar: White Dwarfs, $ H^-$ ion,.., Black holes

Patrick Dasgupta

2011

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Significantly super-Chandrasekhar limiting mass white dwarfs and their consequences

Sathyawageeswar Subramanian, S. Mukerjee, Mukul Bhattacharya

Astronomical Society of the Pacific, 2017

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Evolution of Stars by Kinetic Theory and Quantum Physics on the Basis Generalized Special Relativity

Sawsan Ahmed Elhouri

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Sub-Chandrasekhar Mass Models for Supernovae

Stanford Woosley

The Astrophysical Journal, 2011

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Modified Einstein's gravity as a possible missing link between sub- and super-Chandrasekhar type Ia supernovae

Dr. Upasana Das

Journal of Cosmology and Astroparticle Physics, 2015

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Significantly super-Chandrasekhar limiting mass white dwarfs as progenitors for peculiar over-luminous type Ia supernovae

Dr. Upasana Das

2015

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New Mass Limit for White Dwarfs: Super-Chandrasekhar Type Ia Supernova as a New Standard Candle

Dr. Upasana Das

Physical Review Letters, 2013

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On the Static and Dynamical Collapse of White Dwarfs

Christian Hainzl

Entropy and the quantum: Arizona School of Analysis …, 2010

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On the Distribution of Massive White Dwarfs and its Implication for Accretion-Induced Collapse

Prof. Ali A . Taani

2017

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On the gravitational collapse of a massive star

Angelo Loinger

2005

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General relativistic effects in the structure of massive white dwarfs

Manuel Malheiro

General Relativity and Gravitation

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On the Radiation Problem of High Mass Stars

Golden Gadzirai Nyambuya

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A POSSIBLE EVOLUTIONARY SCENARIO OF HIGHLY MAGNETIZED SUPER-CHANDRASEKHAR WHITE DWARFS: PROGENITORS OF PECULIAR TYPE Ia SUPERNOVAE

Dr. Upasana Das

The Astrophysical Journal, 2013

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An introductory study to white dwarfs

Marcelo Chiapparini

2018

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Sub-Chandrasekhar mass models for Type IA supernovae

Stanford Woosley

The Astrophysical Journal, 1994

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Mass of highly magnetized white dwarfs exceeding the Chandrasekhar limit: An analytical view

Aritra Kundu

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Detailed Study of Stellar Evolution and Stellar Gravitational Collapse Leading to The Formation of Black Holes

Shivika Lamba

International journal of scientific advances, 2022

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Violation of Chandrasekhar mass-limit in noncommutative geometry: A strong possible explanation for the super-Chandrasekhar limiting mass white dwarfs

Surajit Kalita

2019

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On Modified Dispersion Relations and the Chandrasekhar Mass Limit

Seth Major

International Journal of Modern Physics D, 2009

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Solving the Giant Stars Problem: Theories of Stellar Evolution from The 1930s to The 1950s

Davide Cenadelli

Archive for History of Exact Sciences, 2010

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Static and rotating white dwarf stars at finite temperatures

Kuantay Boshkayev

International Journal of Mathematics and Physics, 2021

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Highly super-Chandrasekhar white dwarfs in an extensive GRMHD framework

Dr. Upasana Das

The Fourteenth Marcel Grossmann Meeting, 2017

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Collapse of White Dwarfs in Close Binary Systems

Ramon Canal

International Astronomical Union Colloquium

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Strong constraints on magnetized white dwarfs surpassing the Chandrasekhar mass limit

Rajaram Nityananda

Physical Review D, 2014

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The relation between the observed mass distribution for compact stars and the mechanism for supernova explosions

Konstantin Postnov

Astronomy Reports, 2001

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Study of compact objects: a new analytical stellar model

shyam das

European physical journal. C, Particles and fields, 2024

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On the evolution and fate of super-massive stars

E.P.J. van den Heuvel

Astronomy and Astrophysics, 2008

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Two solar-mass compact stars: structure, composition, and cooling

Armen Sedrakian

2011

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Violation of Chandrasekhar Mass Limit: The Exciting Potential of Strongly Magnetized White Dwarfs

Dr. Upasana Das

International Journal of Modern Physics D, 2012

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The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star

Andy Howell, Julien Guy

Nature, 2006

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The formation of stars by gravitational collapse rather than competitive accretion

Mark Krumholz

Nature, 2005

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