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Information theory for fields
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A physical field has an infinite number of degrees of freedom since it has a field value at each location of a continuous space. Therefore, it is impossible to know a field from finite measurements alone and prior information on the field is essential for field inference. An information theory for fields is needed to join the measurement and prior information into probabilistic statements on field configurations. Such an information field theory (IFT) is built upon the language of mathematical physics, in particular on field theory and statistical mechanics. IFT permits the mathematical derivation of optimal imaging algorithms, data analysis methods, and even computer simulation schemes. The application of IFT algorithms to astronomical datasets provides high fidelity images of the Universe and facilitates the search for subtle statistical signals from the Big Bang. The concepts of IFT might even pave the road to novel computer simulations that are aware of their own uncertainties.
Forward citations
Cited by 3 Pith papers
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Milky Way Atlas: A radial-velocity-resolved, three-dimensional map of H I within 1.25 kpc
A Bayesian inference method combining HI4PI radio data with Gaia-based 3D dust maps reconstructs the 3D density, velocity, and line-width of local atomic hydrogen within 1.25 kpc, validated by synthetic tests and inde...
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Information Field Theory with JAX infers Air Shower Electric Currents from Antenna Signal Traces
An IFT+JAX Bayesian pipeline infers the space-time current-density field of an air shower from synthetic antenna signals, reproducing the main structure of the simulated shower.
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SMIET: Fast and accurate synthesis of radio pulses from extensive air shower using simulated templates
SMIET synthesizes air-shower radio pulses in seconds from one simulated shower, matching CoREAS amplitudes within about 4-6% when the shower maximum is within 100 g/cm2.
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