(Challenge Area 2: Safe and Accurate Landing Capabilities, Mars Ascent, and Innovative Exploration Architectures) Many Mars Sample Return (MSR) architecture studies have been conducted over the years. A key element of them is the Earth Return Stage (ERS) whose objective is to obtain the sample from the Mars Ascent Vehicle (MAV) and return it safely to the surface of the Earth. ERS designs predominantly use chemical propulsion [1], incurring a significant launch mass penalty due to the low specific impulse of such systems coupled with the launch mass sensitivity to returned mass. It is proposed to use solar sail propulsion for the ERS, providing a high (effective) specific impulse propulsion system in the final stage of the multi-stage syste...
Solar sailing has long been envisaged as an enabling technology. The promise of open-ended missions ...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
Mars Sample Return (MSR) missions could benefit from the high specific impulse of Solar Electric Pro...
(Challenge Area 2: Safe and Accurate Landing Capabilities, Mars Ascent, and Innovative Exploration A...
Solar sails have the potential to provide mass and cost savings for spacecraft traveling within the ...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
Solar sailing can be used to reduce lander mass allocation by delivering the lander to a low, therma...
Solar sailing can be used to reduce lander mass allocation by delivering the lander to a low, therma...
Solar sailing can be used to reduce lander mass allocation by delivering the lander to a low, therma...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
Solar sailing has long been envisaged as an enabling technology. The promise of open-ended missions ...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
Mars Sample Return (MSR) missions could benefit from the high specific impulse of Solar Electric Pro...
(Challenge Area 2: Safe and Accurate Landing Capabilities, Mars Ascent, and Innovative Exploration A...
Solar sails have the potential to provide mass and cost savings for spacecraft traveling within the ...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
A conventional Mercury sample return mission requires significant launch mass due to the large AV re...
Solar sailing can be used to reduce lander mass allocation by delivering the lander to a low, therma...
Solar sailing can be used to reduce lander mass allocation by delivering the lander to a low, therma...
Solar sailing can be used to reduce lander mass allocation by delivering the lander to a low, therma...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
Solar sailing has long been envisaged as an enabling technology. The promise of open-ended missions ...
The use of solar sail propulsion is investigated for both Mercury orbiter (MO) and Mercury sample re...
Mars Sample Return (MSR) missions could benefit from the high specific impulse of Solar Electric Pro...