Quantum error correction & holographic codes
I study structural connections between quantum error correction and holographic codes, with an emphasis on how geometry and information constraints organize robust quantum systems.
Research
My work is organized around a shared question: how do geometry, information, and computation constrain what complex systems can do?
I study structural connections between quantum error correction and holographic codes, with an emphasis on how geometry and information constraints organize robust quantum systems.
I am interested in the role of hyperbolic geometry in quantum many-body constructions, including models with restricted mobility and fracton-like structure.
I investigate possible quantum advantages in learning and scientific computation, focusing on settings where the source of a speedup can be stated and analyzed precisely.
I explore how machine learning can support scientific reasoning and discovery, particularly for physics-informed problems where structure and interpretability matter.