Javascript must be enabled to continue!
Comet Interceptor: Visiting a Pristine World
View through CrossRef
Introduction: Comet Interceptor is the first Fast (F-class) mission in ESA’s Cosmic Vision program [1], and is the first rapid response mission, waiting in space for its target comet to appear. Its goal is the first in situ investigation of a long-period comet. Comet Interceptor (Spacecraft A or S/C A) will carry two deployable probes, allowing multipoint investigations of the target. Probe B1 is contributed by JAXA and probe B2 by ESA. The mission will be launched in 2029 on an Ariane 6 towards the Sun-earth Lagrange point L2, together with the Atmospheric Remote-sensing Infrared Exoplanet Large-survey (ARIEL) mission.Science Objectives: All space missions to comets have so far visited short-period comets (SPCs). Comet Interceptor will, for the first time, target a long-period comet (LPC), ideally a dynamically new one. The mission will investigate the processes of planetesimal formation by evaluating which of the phenomena observed by previous missions, particularly during the rendezvous of Rosetta with Comet 67P, are primordial and which have developed during the many perihelion passages of those SPCs. Specifically, the objectives of Comet Interceptor are:Comet Nucleus Science - What is the surface composition, shape, morphology, and structure of the target object?
Comet Environment Science - What is the composition of the coma, its connection to the nucleus (activity) and the nature of its interaction with the solar wind?
Mission Profile: After launch and transfer to L2, Comet Interceptor will wait for its target comet. In the unlikely case that no suitable LPC is found, the target will be selected from a list of SPCs.The comet encounter will take place near earth’ orbit (between 0.9 and 1.2 AU from the sun), at the ecliptic node of the target comet. The duration of the waiting time (typically a few years) and of the transfer to encounter (typically between several months and a few years) depend on the target.In the last two days before the fast flyby (velocity between 10 km/s and 70 km/s) the probes will be released from S/C A and pass by the target. Comet Interceptor is designed to withstand the environment of Comet 1P Halley at the time of the flyby by the Giotto mission at a speed of 70 km/s and a closest approach distances of 1000 km for S/C A, 850 km for probe B1 and 400 km for probe B2. The closest approach distances may be adjusted according to flyby velocity and target comet activity. The data from the probes are transferred to S/C A by an intersatellite link, and up to 6 months after the flyby are reserved for data downlink from S/C A to earth.Payload: The instrumentation of Comet Interceptor is:Spacecraft A:Comet Camera (CoCA): Visible high-resolution imager, 4 colour filters;
Modular InfraRed Molecular & Ices Sensor (MIRMIS): IR Imaging spectrometer, 0.9 – 25 μm;
Mass Analyzer for Neutrals in a Coma (MANiaC): Mass Spectrometer, mass/charge range up to ~1000;
Dust, Fields, and Plasma (DFP-A) instrument suite: dust detector, magnetometer, plasma instrument measuring electric fields and plasma density and temperature, ion and energetic neutral atoms spectrometer, and electron spectrometer.
Probe B1:Hydrogen Imager (HI): Ly α imager;
Plasma Suite (PS): Magnetometer and Ion Mass Spectrometer;
Narrow Angle Camera (NAC) and Wide Angle Camera (WAC): NAC for high-resolution nucleus imaging, WAC for Coma imaging.
Probe B2:Entire Visible Sky (EnVisS): All-sky imager with polarimetric capability;
Optical Periscope for Comets (OPIC): Visible Imager for science and navigation;
Dust, Fields, and Plasma (DFP-B2): Dust detector and magnetometer.
Conclusions: The Comet Interceptor mission provides various firsts:First mission to an LPC,
First multipoint investigation of a comet with three spacecraft,
First rapid response mission.
References: [1] Jones, G. H. et al. (2024), Space Sci. Rev 220, issue1, article 9.
Title: Comet Interceptor: Visiting a Pristine World
Description:
Introduction: Comet Interceptor is the first Fast (F-class) mission in ESA’s Cosmic Vision program [1], and is the first rapid response mission, waiting in space for its target comet to appear.
Its goal is the first in situ investigation of a long-period comet.
Comet Interceptor (Spacecraft A or S/C A) will carry two deployable probes, allowing multipoint investigations of the target.
Probe B1 is contributed by JAXA and probe B2 by ESA.
The mission will be launched in 2029 on an Ariane 6 towards the Sun-earth Lagrange point L2, together with the Atmospheric Remote-sensing Infrared Exoplanet Large-survey (ARIEL) mission.
Science Objectives: All space missions to comets have so far visited short-period comets (SPCs).
Comet Interceptor will, for the first time, target a long-period comet (LPC), ideally a dynamically new one.
The mission will investigate the processes of planetesimal formation by evaluating which of the phenomena observed by previous missions, particularly during the rendezvous of Rosetta with Comet 67P, are primordial and which have developed during the many perihelion passages of those SPCs.
Specifically, the objectives of Comet Interceptor are:Comet Nucleus Science - What is the surface composition, shape, morphology, and structure of the target object?
Comet Environment Science - What is the composition of the coma, its connection to the nucleus (activity) and the nature of its interaction with the solar wind?
Mission Profile: After launch and transfer to L2, Comet Interceptor will wait for its target comet.
In the unlikely case that no suitable LPC is found, the target will be selected from a list of SPCs.
The comet encounter will take place near earth’ orbit (between 0.
9 and 1.
2 AU from the sun), at the ecliptic node of the target comet.
The duration of the waiting time (typically a few years) and of the transfer to encounter (typically between several months and a few years) depend on the target.
In the last two days before the fast flyby (velocity between 10 km/s and 70 km/s) the probes will be released from S/C A and pass by the target.
Comet Interceptor is designed to withstand the environment of Comet 1P Halley at the time of the flyby by the Giotto mission at a speed of 70 km/s and a closest approach distances of 1000 km for S/C A, 850 km for probe B1 and 400 km for probe B2.
The closest approach distances may be adjusted according to flyby velocity and target comet activity.
The data from the probes are transferred to S/C A by an intersatellite link, and up to 6 months after the flyby are reserved for data downlink from S/C A to earth.
Payload: The instrumentation of Comet Interceptor is:Spacecraft A:Comet Camera (CoCA): Visible high-resolution imager, 4 colour filters;
Modular InfraRed Molecular & Ices Sensor (MIRMIS): IR Imaging spectrometer, 0.
9 – 25 μm;
Mass Analyzer for Neutrals in a Coma (MANiaC): Mass Spectrometer, mass/charge range up to ~1000;
Dust, Fields, and Plasma (DFP-A) instrument suite: dust detector, magnetometer, plasma instrument measuring electric fields and plasma density and temperature, ion and energetic neutral atoms spectrometer, and electron spectrometer.
Probe B1:Hydrogen Imager (HI): Ly α imager;
Plasma Suite (PS): Magnetometer and Ion Mass Spectrometer;
Narrow Angle Camera (NAC) and Wide Angle Camera (WAC): NAC for high-resolution nucleus imaging, WAC for Coma imaging.
Probe B2:Entire Visible Sky (EnVisS): All-sky imager with polarimetric capability;
Optical Periscope for Comets (OPIC): Visible Imager for science and navigation;
Dust, Fields, and Plasma (DFP-B2): Dust detector and magnetometer.
Conclusions: The Comet Interceptor mission provides various firsts:First mission to an LPC,
First multipoint investigation of a comet with three spacecraft,
First rapid response mission.
References: [1] Jones, G.
H.
et al.
(2024), Space Sci.
Rev 220, issue1, article 9.
Related Results
Comet Interceptor: A Rapid Response Mission To a Pristine World
Comet Interceptor: A Rapid Response Mission To a Pristine World
Introduction:  Comet Interceptor is the first Fast (F-class) mission in ESA’s Cosmic Vision program [1], and is the first rapid response mission, waiting in spac...
Comet Interceptor: A mission to an ancient world
Comet Interceptor: A mission to an ancient world
Comets are the most pristine objects in our Solar System. Having spent most of their life at large distance from the Sun, where they remained mostly unaffected by solar radiation, ...
LSST: Discovering the Target of the Comet Interceptor mission
LSST: Discovering the Target of the Comet Interceptor mission
By the classical definition, Long-Period Comets (LPCs) are comets with an orbital period longer than 200 years. With the exception of Comet 153P/Ikeya-Zhang, all known long-period ...
The Comet Interceptor Mission
The Comet Interceptor Mission
Comets are undoubtedly extremely valuable scientific targets, as they largely preserve the ices formed at the birth of our Solar System. In June 2019, the multi-spacecraft project ...
HCREM, a rendezvous mission to comet Halley
HCREM, a rendezvous mission to comet Halley
- IntroductionWe propose a Halley Comet Rendezvous Mission (HCREM) feasible with currently available propulsion technology with a target launch date around 2040. The mission concep...
The Comet Interceptor Mission
The Comet Interceptor Mission
<p>In 2019, Comet Interceptor was selected by the European Space Agency, ESA, as the first in its new class of F missions. At the time of this writing, formal adoptio...
The Comet Interceptor Mission
The Comet Interceptor Mission
<p>In 2019, Comet Interceptor was selected by the European Space Agency, ESA, as the first in its new class of F missions. The Japanese space agency, JAXA, is making ...
Ion velocity distribution functions at a low activity comet
Ion velocity distribution functions at a low activity comet
We study the transition period of induced comet magnetospheres between the simple deflection of the solar wind due to mass loading and a fully developed bow shock. We present exper...

