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职业迁徙
个人简介
Research Interests
I am interested in a variety of problems involving physical systems that range in size from laboratory to cosmological scales. This has led me over time to work on a variety of interesting problems in cosmology, astrophysics and condensed matter. More specifically, using quantum field theory techniques I have drawn connections among seemingly different phenomena, ranging from inflation and dark matter in cosmology, to tides, superradiance and black holes in astrophysics, to collective excitations in solids, superfluids and (anti-)ferromagnets.
In the context of gravitational physics, I have derived a novel EFT approach to slowly-spinning, relativistic objects coupled to gravity. This work provided the foundation for an EFT description of tidal dynamics and superradiance---a phenomenon which can be used to probe the existence of light axions. Most of my research in cosmology has focused on improving our understanding of primordial perturbations produced during inflation. More recently, I have worked on models of dark matter aimed at reproducing the radial acceleration relation observed in spiral galaxies. I have also developed an EFT to describe perturbations of black holes with scalar hair.
I am interested in a variety of problems involving physical systems that range in size from laboratory to cosmological scales. This has led me over time to work on a variety of interesting problems in cosmology, astrophysics and condensed matter. More specifically, using quantum field theory techniques I have drawn connections among seemingly different phenomena, ranging from inflation and dark matter in cosmology, to tides, superradiance and black holes in astrophysics, to collective excitations in solids, superfluids and (anti-)ferromagnets.
In the context of gravitational physics, I have derived a novel EFT approach to slowly-spinning, relativistic objects coupled to gravity. This work provided the foundation for an EFT description of tidal dynamics and superradiance---a phenomenon which can be used to probe the existence of light axions. Most of my research in cosmology has focused on improving our understanding of primordial perturbations produced during inflation. More recently, I have worked on models of dark matter aimed at reproducing the radial acceleration relation observed in spiral galaxies. I have also developed an EFT to describe perturbations of black holes with scalar hair.
研究兴趣
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arxiv(2023)
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semanticscholar(2022)
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