摘要: Particle cascades induced by ultra-high-energy (UHE) cosmic rays and
neutrinos impacting on the lunar regolith usually radiate Cherenkov radio
emissions due to the presence of excess negative charge, which is known as
Askaryan effect. Several experiments have been carried out to detect the
Cherenkov radio emissions in the lunar regolith. To prepare for future lunar
Ultra-Long Wavelength (ULW, frequencies below 30 MHz) radio astronomy missions,
we study the detection of the Cherenkov radio emissions with the ULW radio
telescope that are operating at the lunar orbit. We have carried out instrument
modelling and analytic calculations for the analysis of aperture, flux and
event rate, and the analyses show the detectability of the Cherenkov radiation.
Based on the properties of the Cherenkov radiation, we have demonstrated that
the cosmic ray and neutrino events could be reconstructed with the three ULW
vector antennas onboard the lunar satellites via measurements of the Askaryan
radio pulse intensity, polarizations, etc. The results obtained by this study
would be useful for future lunar radio explorer mission, where the detections
of UHE cosmic rays and neutrinos could be successfully attempted.