We present the Migdal In Galactic Dark mAtter expLoration (MIGDAL) experiment aiming at the unambiguous observation and study of the so-called Migdal effect induced by fast-neutron scattering. It is hoped that this elusive atomic process can be exploited to enhance the reach of direct dark matter search experiments to lower masses, but it is still lacking experimental confirmation. Our goal is to detect the predicted atomic electron emission which is thought to accompany nuclear scattering with low, but calculable probability, by deploying an Optical Time Projection Chamber filled with a low-pressure gas based on CF$_4$. Initially pure CF$_4$ will be used, and then mixed with other elements employed by leading dark matter search technologie...
The present thesis, in the context of the direct detection of dark matter, focuses on the search for...
New data are reported from the operation of a 4.0 kg CF3I bubble chamber in the 6800 foot deep SNOLA...
The Migdal effect inside detectors provides a new possibility of probing the sub-GeV dark matter (DM...
We present the Migdal In Galactic Dark mAtter expLoration (MIGDAL) experiment aiming at the unambigu...
We present the Migdal In Galactic Dark mAtter expLoration (MIGDAL) experiment aiming at the unambigu...
The scattering of neutral particles by an atomic nucleus can lead to electronic ionization and excit...
In recent years, dark matter direct detection experiments have spurred interest in the Migdal effect...
The search for dark matter weakly interacting massive particles with noble liquids has probed masse...
Direct dark matter detection experiments search for the signals from dark matter (DM) scattering of...
Nuclear scattering events with large momentum transfer in atomic, molecular, or solid-state systems ...
Dark Matter experiments searching for Weakly interacting massive particles (WIMPs) primarily use nuc...
We propose a new technique for the calibration of nuclear recoils in large noble element dual-phase ...
Abstract The elastic scattering of an atomic nucleus plays a central role in dark matter direct dete...
Optically dense clouds in the interstellar medium composed predominantly of molecular hydrogen, know...
A novel detection of sub-GeV dark matter is proposed in the paper. The electron cloud is boosted by ...
The present thesis, in the context of the direct detection of dark matter, focuses on the search for...
New data are reported from the operation of a 4.0 kg CF3I bubble chamber in the 6800 foot deep SNOLA...
The Migdal effect inside detectors provides a new possibility of probing the sub-GeV dark matter (DM...
We present the Migdal In Galactic Dark mAtter expLoration (MIGDAL) experiment aiming at the unambigu...
We present the Migdal In Galactic Dark mAtter expLoration (MIGDAL) experiment aiming at the unambigu...
The scattering of neutral particles by an atomic nucleus can lead to electronic ionization and excit...
In recent years, dark matter direct detection experiments have spurred interest in the Migdal effect...
The search for dark matter weakly interacting massive particles with noble liquids has probed masse...
Direct dark matter detection experiments search for the signals from dark matter (DM) scattering of...
Nuclear scattering events with large momentum transfer in atomic, molecular, or solid-state systems ...
Dark Matter experiments searching for Weakly interacting massive particles (WIMPs) primarily use nuc...
We propose a new technique for the calibration of nuclear recoils in large noble element dual-phase ...
Abstract The elastic scattering of an atomic nucleus plays a central role in dark matter direct dete...
Optically dense clouds in the interstellar medium composed predominantly of molecular hydrogen, know...
A novel detection of sub-GeV dark matter is proposed in the paper. The electron cloud is boosted by ...
The present thesis, in the context of the direct detection of dark matter, focuses on the search for...
New data are reported from the operation of a 4.0 kg CF3I bubble chamber in the 6800 foot deep SNOLA...
The Migdal effect inside detectors provides a new possibility of probing the sub-GeV dark matter (DM...