7 papers
Measuring the Acceleration-Dependent Temperature of the Minkowski Vacuum
Daine L. Danielson, Netta Engelhardt, Lindley A. Winslow
Relativistic quantum field theory is the structure on which the Standard Model and beyond-Standard Model physics are built. One of its most striking predictions is the Unruh effect…
A Quantum Gravitational Mechanism for Isotropization of de Sitter Cosmologies
Stephon Alexander, Bruno Alexandre, Daine L. Danielson +1
Today, the observable cosmos exhibits a remarkable degree of isotropy and plausibly began in a nearly isotropic initial state. The properties of the Lorentzian Chern-Simons-Kodama…
Quantum Advantage for Sensing Properties of Classical Fields
Jordan Cotler, Daine L. Danielson, Ishaan Kannan
Modern precision experiments often probe unknown classical fields with bosonic sensors in quantum-noise-limited regimes where vacuum fluctuations limit conventional readout. We int…
Building an AI-native Research Ecosystem for Experimental Particle Physics: A Community Vision
Thea Klaeboe Aarrestad, Alaa Abdelhamid, Haider Abidi +457
Experimental particle physics seeks to understand the universe by probing its fundamental particles and forces and exploring how they govern the large-scale processes that shape co…
Horizons and Soft Quantum Information
Daine L. Danielson, Gautam Satishchandran
It was recently shown that black holes decohere any quantum superpositions in their vicinity. This decoherence is mediated by soft radiation through the horizon, and can be underst…
Local Description of Decoherence of Quantum Superpositions by Black Holes and Other Bodies
Daine L. Danielson, Gautam Satishchandran, Robert M. Wald
It was previously shown that if an experimenter, Alice, puts a massive or charged body in a quantum spatial superposition, then the presence of a black hole (or more generally any…