Hawking discovered in his pioneering paper that, in the context of
?quantum field theory in curved spacetime, black holes radiate thermal
?radiation. In this talk, I will revisit Hawking radiation in
?asymptotic flat spacetime and investigate how to generalize the
?analysis to Schwarzschild-de Sitter spacetime. I will also review the
?thermodynamic properties of the Schwarzschild-de Sitter system and
?show that Schottky anomaly persist in the presence of particle production.?
Bio:?
Education:
University of Massachusetts at Amherst Amherst, Massachusetts
Ph.D. student in Physics 2016–2022
Beihang University Beijing, China
Bachelor of Science in Physics 2012–2016
Research Interests:
I am interested in theoretical high energy physics with an emphasis
?on classical and quantum aspects of gravity, quantum field theory and
?inflationary cosmology. Specifically, my research has mainly focused
?on black hole thermodynamics, the Schwinger effect, warm inflation
and ?the Weak Gravity Conjecture.
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