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Studying Compact Star Equation of States with General Relativistic Initial Data Approach


Studying Compact Star Equation of States with General Relativistic Initial Data Approach


Springer Theses

von: Enping Zhou

CHF 118.00

Verlag: Springer
Format: PDF
Veröffentl.: 03.04.2020
ISBN/EAN: 9789811541513
Sprache: englisch

Dieses eBook enthält ein Wasserzeichen.

Beschreibungen

<p></p><p>This book focuses on the equation of state (EoS) of compact stars, particularly the intriguing possibility of the “quark star model.” The EoS of compact stars is the subject of ongoing debates among astrophysicists and particle physicists, due to the non-perturbative property of strong interaction at low energy scales. The book investigates the tidal deformability and maximum mass of rotating quark stars and triaxially rotating quark stars, and compares them with those of neutron stars to reveal significant differences. Lastly, by combining the latest observations of GW170817, the book suggests potential ways to distinguish between the neutron star and quark star models.&nbsp;<br></p><p></p>
<p>Backgrounds.- Tidal deformability of strange star.- Maximum mass of rotating strange star.- Triaxially rotating strange star.- Conclusion and Discussion.</p>
<p></p><p>Dr. Enping Zhou received his Ph.D. degree from Peking University. His research interests include&nbsp;pulsar observation and pulsar science, compact star physics, numerical relativity, strange quark star models, and building initial data for binary quark stars. He received “The Excellent Doctoral Dissertation” award from Peking University in 2018.&nbsp;</p><p></p>
<p></p><p>This book focuses on the equation of state (EoS) of compact stars, particularly the intriguing possibility of the “quark star model.” The EoS of compact stars is the subject of ongoing debates among astrophysicists and particle physicists, due to the non-perturbative property of strong interaction at low energy scales. The book investigates the tidal deformability and maximum mass of rotating quark stars and triaxially rotating quark stars, and compares them with those of neutron stars to reveal significant differences. Lastly, by combining the latest observations of GW170817, the book suggests potential ways to distinguish between the neutron star and quark star models.&nbsp;<br></p><p></p>
Nominated as an outstanding Ph.D. thesis by Peking University Studies the equation of state (EoS) of compact stars with the aid of gravitational wave observations Discusses the possibility of a quark star model Presents significant differences between quark stars and neutron stars

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