
Chun-Hung Chen, Ph.D.
Laboratory: Laboratory of Cosmology and Gravity (CGL)
Office:
Email: chun-hungc@nu.ac.th
Education
Research
Books
Short courses / Talks
Teaching
Students
- Ph.D. (Physics) Tamkang University, Taiwan
- M.S. (Physics) Tamkang University, Taiwan
- B.S. (Physics-Applied Physics Section) Tamkang University, Taiwan
- Black hole perturbation theory
Selected Publications
- P. Boonserm, C. -H. Chen, T. Ngampitipan, & P. Wongjun. (2021). Physical Review D, 104(8), 084054.
Greybody factor for massive fermion emitted by a black hole in de Rham-Gabadadze-Tolley massive gravity theory. - C.-H. Chen, H. T. Cho, A. Chrysostomou, & A. S. Cornell,. (2021). Physical Review D, 104 (2), 024009, 2021.
Quasinormal modes for integer and half-integer spins within the large angular momentum limit. - C.-H. Chen, H. T. Cho, & A. S. Cornell, (2020) Chinese Journal of Physics, 67, 646-656.
A new (original) set of Quasi-normal modes in spherically symmetric AdS black hole spacetimes. - P. Wongjun, C. -H. Chen, & R. Nakarachinda (2020) Physical Review D, 101(12), 124033.
Quasinormal modes of a massless Dirac field in de Rham-Gabadadze-Tolley massive gravity. - C.-H. Chen, H. T. Cho, A. S. Cornell, and G. Harmsen. (2019). Physical Review D, 100(10), 104018.
Master equations and quasinormal modes of spin- fields in Schwarzschild (A)dS black hole spacetimes. - C.-H. Chen, H. T. Cho, A. S. Cornell, G. Harmsen, and X. Ngcobo, Physical Review D, 97, 024038 (2018), arXiv: 1710.08024[gr-qc]. Spin-3/2 fields in D-dimensional Reissner-Nordstrӧm black hole spacetime.
- C.-H. Chen, H. T. Cho and A. S. Cornell, Semi-Analytic Techniques for Solving Quasi-Normal Modes, Trends in Modern Cosmology, Dr. Abraao Capistrano (Ed.), InTech (2017).
Available from: https://www.intechopen.com/books/trends-in-modern-cosmology/semi-analytic-techniques-for-solving-quasi-normal-modes. - C.-H. Chen, H. T. Cho, A. S. Cornell, and G. Harmsen, Physical Review D, 94, 044052 (2016), arXiv: 1605.05263 [gr-qc].
Spin-3/2 fields in D-dimensional Schwarzschild black hole spacetimes. - G. Harmsen, C.-H. Chen, H. T. Cho, A. S. Cornell, accepted for publication in the High Energy Particle Physics workshop 2016 proceedings, arXiv: 1602.07434.
Absorption probabilities associated with spin-3/2 particles near N-dimensional Schwarzschild black holes. - C.-H. Chen, H. T. Cho, A. S. Cornell, G. Harmsen, and Wade Naylor, Chin. J. Phys. 53, 110101 (2015), arXiv: 1504.02579
Gravitino fields in Schwarzschild black hole spacetime.