Cosmic dawn, the onset of star formation in the early universe, can in principle be studied via the 21-cm transition of neutral hydrogen, for which a sky-averaged absorption signal, redshifted to MHz frequencies, is predicted to be O(10-100) mK. Detection requires separation of the 21-cm signal from bright chromatic foreground emission due to Galactic structure, and the characterization of how it couples to instrumental response. In this work, we present characterization of antenna gain patterns for the Large-aperture Experiment to detect the Dark Ages (LEDA) via simulations, assessing the effects of the antenna ground-plane geometries used, and measured soil properties
abstract: The Universe transitioned from a state of neutral hydrogen (HI) shortly after recombinatio...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
The 21 cm signal from cosmic hydrogen is one of the most propitious probes of the early Universe. Th...
Cosmic Dawn, the onset of star formation in the early universe, can in principle be studied via the ...
The Large-aperture Experiment to Detect the Dark Age (LEDA) was designed to detect the predicted O(1...
The 21 cm transition of neutral hydrogen is opening an observational window into the Cosmic Dawn of ...
The formation of the first stars and galaxies during 'Cosmic Dawn' is thought to have imparted a fai...
58 citazioniThe most promising near-term observable of the cosmic dark age prior to widespread reion...
The redshifted 21 cm brightness distribution from neutral hydrogen is a promising probe into the cos...
Global 21cm cosmology aims to investigate the cosmic dawn and epoch of reionisation by measuring the...
Accurate antenna beam models are critical for radio observations aiming to isolate the redshifted 21...
The sky-averaged (global) spectrum of the redshifted 21-cm line promises to be a direct probe of the...
The 21 cm transition of neutral hydrogen is opening an observational window into the Cosmic Dawn of ...
The global (i.e., spatially averaged) spectrum of the redshifted 21 cm line has generated much exper...
The H I 21 cm transition line is expected to be an important probe into the cosmic dark ages and epo...
abstract: The Universe transitioned from a state of neutral hydrogen (HI) shortly after recombinatio...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
The 21 cm signal from cosmic hydrogen is one of the most propitious probes of the early Universe. Th...
Cosmic Dawn, the onset of star formation in the early universe, can in principle be studied via the ...
The Large-aperture Experiment to Detect the Dark Age (LEDA) was designed to detect the predicted O(1...
The 21 cm transition of neutral hydrogen is opening an observational window into the Cosmic Dawn of ...
The formation of the first stars and galaxies during 'Cosmic Dawn' is thought to have imparted a fai...
58 citazioniThe most promising near-term observable of the cosmic dark age prior to widespread reion...
The redshifted 21 cm brightness distribution from neutral hydrogen is a promising probe into the cos...
Global 21cm cosmology aims to investigate the cosmic dawn and epoch of reionisation by measuring the...
Accurate antenna beam models are critical for radio observations aiming to isolate the redshifted 21...
The sky-averaged (global) spectrum of the redshifted 21-cm line promises to be a direct probe of the...
The 21 cm transition of neutral hydrogen is opening an observational window into the Cosmic Dawn of ...
The global (i.e., spatially averaged) spectrum of the redshifted 21 cm line has generated much exper...
The H I 21 cm transition line is expected to be an important probe into the cosmic dark ages and epo...
abstract: The Universe transitioned from a state of neutral hydrogen (HI) shortly after recombinatio...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
The 21 cm signal from cosmic hydrogen is one of the most propitious probes of the early Universe. Th...