The lunar Askaryan technique is a method to study the highest-energy cosmic rays and their predicted counterparts, the ultra-high-energy neutrinos. By observing the Moon with a radio telescope, and searching for the characteristic nanosecond-scale Askaryan pulses emitted when a high-energy particle interacts in the outer layers of the Moon, the visible lunar surface can be used as a detection area. Several previous experiments, at Parkes, Goldstone, Kalyazin, Westerbork, the ATCA, Lovell, LOFAR, and the VLA, have developed the necessary techniques to search for these pulses, but existing instruments have lacked the necessary sensitivity to detect the known flux of cosmic rays from such a distance. This will change with the advent of the SKA...
The origin of the highest-energy particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The origin of the most energetic particles observed in nature, the ultra high energy (UHE) cosmic ra...
Ultra-high-energy cosmic rays, and their expected counterpart neutrinos, are the most energetic part...
The lunar Askaryan technique is a method to study the highest-energy cosmic rays and their predicted...
The origin of the most energetic particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The origin of the most energetic particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The lunar Askaryan technique, which involves searching for Askaryan radio pulses from particle casca...
The lunar technique is a method for maximising the collection area for ultra-high-energy (UHE) cosmi...
The proposal to use ground based radio telescopes for detection of Askaryan radio pulses from partic...
The origin of the most energetic particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The lunar Askaryan technique, which involves searching for Askaryan radio pulses from particle casca...
The origin of the highest-energy particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The origin of the most energetic particles observed in nature, the ultra high energy (UHE) cosmic ra...
Ultra-high-energy cosmic rays, and their expected counterpart neutrinos, are the most energetic part...
The lunar Askaryan technique is a method to study the highest-energy cosmic rays and their predicted...
The origin of the most energetic particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The origin of the most energetic particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The lunar Askaryan technique, which involves searching for Askaryan radio pulses from particle casca...
The lunar technique is a method for maximising the collection area for ultra-high-energy (UHE) cosmi...
The proposal to use ground based radio telescopes for detection of Askaryan radio pulses from partic...
The origin of the most energetic particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The lunar Askaryan technique, which involves searching for Askaryan radio pulses from particle casca...
The origin of the highest-energy particles in nature, the ultra-high-energy (UHE) cosmic rays, is st...
The origin of the most energetic particles observed in nature, the ultra high energy (UHE) cosmic ra...
Ultra-high-energy cosmic rays, and their expected counterpart neutrinos, are the most energetic part...