Explores coherence and interferometry principles, including statistical optics, autocorrelation functions, and optical coherence tomography applications.
Explores gauge symmetry, amplitudes, black holes, and fluids, highlighting the interplay between redundancy, diffeomorphisms, and the double copy phenomenon.
Explores constructing correlators using path integrals in quantum mechanics, focusing on the Euclidean and Minkowski spaces and the significance of imaginary time evolution.
Explores sociotechnical controversies in research work, emphasizing the blurred boundaries of expertise and the intertwined nature of facts and values.
Explores the Gravitational-Wave Transient Catalog 2 and the challenges in distinguishing compact bodies, emphasizing the need for accurate waveform models and the discovery potential in gravitational physics.
Explains quantum teleportation, demonstrating the successful transfer of quantum information using classical communication channels and various quantum operations.