DARIS (Distributed Aperture Array for Radio Astronomy in Space) is a radio astronomy space mission concept aimed at observing the low-frequency radio sky in the range 1-10 MHz. Because of the Earth's ionospheric disturbances and opaqueness, this frequency range can only be observed from space. The astronomical science cases include sensitive extragalactic surveys, radio transients such as Jupiter-like burst and Crab-like pulses, and coronal mass ejection tracking. The focus of the DARIS concept study is on feasibility aspects of a distributed aperture synthesis array in space, consisting of small satellite nodes and a mother-ship. The study selected suitable science cases, antenna concepts, communications, signal processing, orbital design,...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
c.j.m.verhoeventudelft.nl Abstract—Recently new and interesting science drivers have emerged for ver...
Restricted Access.At sufficiently low frequencies, no ground-based radio array will be able to produ...
DARIS (Distributed Aperture Array for Radio Astronomy In Space) is a mission to conduct radio astron...
DARIS (Distributed Aperture Array for Radio Astronomy in Space) is a radio astronomy space mission c...
The frequency band below 30 MHz is one of the last unexplored bands in radio astronomy. This band is...
The frequency band below 30 MHz is one of the last unexplored bands in radio astronomy. This band is...
The past decade has seen the advent of various radio astronomy arrays, particularly for low-frequenc...
The past decade has seen the advent of various radio astronomy arrays, particularly for low-frequenc...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
New interesting astronomical science drivers for very low frequency radio astronomy have emerged, ra...
The frequency band below 30 MHz is one of the last unexplored bands in radio astronomy. This band is...
New interesting astronomical science drivers for very low frequency radio astronomy have emerged, ra...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
c.j.m.verhoeventudelft.nl Abstract—Recently new and interesting science drivers have emerged for ver...
Restricted Access.At sufficiently low frequencies, no ground-based radio array will be able to produ...
DARIS (Distributed Aperture Array for Radio Astronomy In Space) is a mission to conduct radio astron...
DARIS (Distributed Aperture Array for Radio Astronomy in Space) is a radio astronomy space mission c...
The frequency band below 30 MHz is one of the last unexplored bands in radio astronomy. This band is...
The frequency band below 30 MHz is one of the last unexplored bands in radio astronomy. This band is...
The past decade has seen the advent of various radio astronomy arrays, particularly for low-frequenc...
The past decade has seen the advent of various radio astronomy arrays, particularly for low-frequenc...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
New interesting astronomical science drivers for very low frequency radio astronomy have emerged, ra...
The frequency band below 30 MHz is one of the last unexplored bands in radio astronomy. This band is...
New interesting astronomical science drivers for very low frequency radio astronomy have emerged, ra...
OLFAR, Orbiting Low Frequency Antennas for Radio Astronomy, will be a space mission to observe the u...
c.j.m.verhoeventudelft.nl Abstract—Recently new and interesting science drivers have emerged for ver...
Restricted Access.At sufficiently low frequencies, no ground-based radio array will be able to produ...