ASU launches Psyche mission website

Psyche, NASA’s Discovery mission to a unique metal asteroid, has a new digital home at ASU


January 29, 2018

Psyche, NASA’s Discovery mission to a unique metal asteroid, has a new digital home at ASU as of this week.

The ASU mission website, psyche.asu.edu, will be a resource for the public to learn about the mission, the spacecraft, the asteroid, the instruments being developed and the team behind the mission. The website also features a countdown clock, a mission timeline, the latest news, a blog, a photo library and details for upcoming events. The ASU mission website will complement NASA’s official Psyche Mission site. Artist's rendition of the Psyche asteroid Psyche, an asteroid orbiting the sun between Mars and Jupiter, is made almost entirely of nickel-iron metal. As such, it offers a unique look into the violent collisions that created Earth and the terrestrial planets. Learn more about Psyche and the journey to a metal world at psyche.asu.edu. Image credit: ASU/Peter Rubin Download Full Image

“A major purpose of space exploration is to inspire everyone, everywhere, to stretch and think and be bolder,” said Lindy Elkins-Tanton, Psyche principal investigator and director of the School of Earth and Space Exploration. “This website is designed to give everyone an opportunity to not only learn about, but also participate in the mission.”

The site offers a variety of ways the public can get involved, including links to information about careers and internships, becoming a NASA Solar System Ambassador, and printing your own 3-D model of the asteroid and spacecraft.

For ASU students, the site features information on Psyche mission-centered senior capstone projects, as well as a multidisciplinary arts program called “Psyche Inspired,” where undergraduate students can use their creative talents from photography to ceramics to share the excitement for Psyche with the public. Both of these programs are being piloted at ASU and will be available nationally next academic year. 

“We encourage everyone to visit the ‘Get Involved’ section to learn about existing NASA programs and internships, as well as connect with special Psyche opportunities we are developing,” said Cassie Bowman, Psyche co-investigator and student collaboration lead. “Through our Psyche-specific programs, everyone can learn about and contribute to the excitement, innovation, and scientific and engineering content of the mission both at school and at home.”

The Psyche mission

Psyche, an asteroid orbiting the sun between Mars and Jupiter, is made almost entirely of nickel-iron metal. As such, it offers a unique look into the violent collisions that created Earth and the terrestrial planets.

The Psyche spacecraft is targeted to launch in August 2022 and travel to the asteroid using solar-electric (low thrust) propulsion, arriving in 2026, following a Mars flyby and gravity-assist in 2023. After arrival, the mission plan calls for 21 months orbiting the asteroid, mapping it and studying its properties.

The scientific goals of the Psyche mission are to understand the building blocks of planet formation and explore first-hand a wholly new and unexplored type of world. The mission team seeks to determine whether Psyche is the core of an early planet, how old it is, whether it formed in similar ways to the Earth's core, and what its surface is like.

The spacecraft's instrument payload will include a magnetometer, a multispectral imager, and a gamma ray and neutron spectrometer. The mission will use an X-band radio telecommunications system and will test a sophisticated new laser communications technology, called Deep Space Optical Communications (DSOC) that encodes data in photons.

The Psyche Mission was selected for flight under NASA's Discovery Program, a series of lower-cost, highly focused robotic space missions that are exploring the solar system. The Psyche Mission’s principal investigator, Lindy Elkins-Tanton, is the director of the School of Earth and Space Exploration. In addition to Elkins-Tanton, ASU researchers on the Psyche mission team include Jim Bell (deputy principal investigator and co-investigator), David Williams (co-investigator), and Catherine Bowman (co-investigator).

The NASA mission is led by Arizona State University. NASA’s Jet Propulsion Laboratory is responsible for mission management; spacecraft assembly, test, and launch operations; mission operations; and navigation. The spacecraft’s solar-electric propulsion chassis will be built by SSL.

For additional resources about the mission, visit https://www.jpl.nasa.gov/missions/psyche and https://www.nasa.gov/psyche.

Karin Valentine

Media Relations & Marketing manager, School of Earth and Space Exploration

480-965-9345

 
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ASU to lead deep-space NASA mission for 1st time

Psyche is 1st time ASU will lead a deep-space NASA mission.
Mission goals: Understanding planet building blocks, explore new type of world.
SESE director Lindy Elkins-Tanton is Psyche's principal investigator.
January 4, 2017

Metal asteroid Psyche to offer unique look into violent collisions that created Earth, terrestrial planets

Editor's note: This story is being highlighted in ASU Now's year in review. To read more top stories from 2017, click here.

Arizona State University’s Psyche Mission, a journey to a metal asteroid, has been selected for flight, marking the first time the school will lead a deep-space NASA mission and the first time scientists will be able to see what is believed to be a planetary core.  

The mission’s spacecraft is expected to launch in 2023, arriving at the asteroid in 2030, where it will spend 20 months in orbit, mapping it and studying its properties. 

It will be part of NASA’s Discovery Program, a series of lower-cost, highly focused robotic space missions that are exploring the solar system. The Psyche project is capped at $450 million.

“This mission, visiting the asteroid Psyche, will be the first time humans will ever be able to see a planetary core,” said principal investigator Lindy Elkins-Tanton, director of ASU’s School of Earth and Space Exploration (SESE). “Having the Psyche Mission selected for NASA’s Discovery Program will help us gain insights into the metal interior of all rocky planets in our solar system, including Earth.”  

Psyche, an asteroid orbiting the sun between Mars and Jupiter, is made almost entirely of nickel-iron metal. As such, it offers a unique look into the violent collisions that created Earth and the other terrestrial planets. 

The scientific goals of the Psyche mission are to understand the building blocks of planet formation and explore firsthand a wholly new and unexplored type of world. The mission team seeks to determine whether Psyche is a protoplanetary core, how old it is, whether it formed in similar ways to the Earth’s core, and what its surface is like.

“The knowledge this mission will create has the potential to affect our thinking about planetary science for generations to come,” ASU President Michael M. Crow said. “We are in a new era of exploration of our solar system with new public-private sector partnerships helping unlock new worlds of discovery, and ASU will be at the forefront of that research.”  

Psyche — a window into planetary cores

Every world explored so far by humans (except gas giant planets such as Jupiter or Saturn) has a surface of ice or rock or a mixture of the two, but their cores are thought to be metallic. These cores, however, lie far below rocky mantles and crusts and are considered unreachable in our lifetimes. 

Psyche, an asteroid that appears to be the exposed nickel-iron core of a protoplanet, one of the building blocks of the sun’s planetary system, may provide a window into those cores. The asteroid is most likely a survivor of violent space collisions, common when the solar system was forming. 

Psyche follows an orbit in the outer part of the main asteroid belt, at an average distance from the sun of about 280 million miles, or three times farther from the sun than Earth. It is roughly the size of Massachusetts (about 130 miles in diameter) and dense (7,000 kg/m³).  

“Being selected to lead this ambitious mission to the all-metal asteroid Psyche is a major milestone that reflects ASU’s outstanding research capacity,” said Sethuraman Panchanathan, executive vice president and chief research and innovation officer at ASU. “It speaks to our innovative spirit and our world-class scientific expertise in space exploration.”

Mission instrument payload

The spacecraft's instrument payload will include magnetometers, multispectral imagers, a gamma ray and neutron spectrometer, and a radio-science experiment.

The multispectral imager, which will be led by an ASU science team, will provide high-resolution images using filters to discriminate between Psyche's metallic and silicate constituents. It consists of a pair of identical cameras designed to acquire geologic, compositional and topographic data.

The gamma ray and neutron spectrometer will detect, measure and map Psyche's elemental composition. The instrument is mounted on a 7-foot (2-meter) boom to distance the sensors from background radiation created by energetic particles interacting with the spacecraft and to provide an unobstructed field of view. The science team for this instrument is based at the Applied Physics Laboratory at Johns Hopkins University.

The magnetometer, which is led by scientists at MIT and UCLA, is designed to detect and measure the remnant magnetic field of the asteroid. It’s composed of two identical high-sensitivity magnetic field sensors located at the middle and outer end of the boom.

The Psyche spacecraft will also use an X-band radio telecommunications system, led by scientists at MIT and NASA’s Jet Propulsion Laboratory. This instrument will measure Psyche's gravity field and, when combined with topography derived from onboard imagery, will provide information on the interior structure of the asteroid.

The Psyche mission team

In addition to Elkins-Tanton, ASU SESE scientists on the Psyche mission team include Jim Bell, deputy principal investigator and co-investigator, co-investigator Erik Asphaug, and co-investigator David Williams.

NASA’s Jet Propulsion Laboratory managed by Caltech is the managing organization and will build the spacecraft with industry partner Space Systems Loral (SSL). JPL’s contribution to the Psyche mission team includes over 75 people, led by project manager Henry Stone, project scientist Carol Polanskey, project systems engineer David Oh and deputy project manager Bob Mase. SSL contribution to the Psyche mission team includes over 50 people led by SEP Chassis deputy program manager Peter Lord and SEP Chassis program manager Steve Scott. 

group photo

The Psyche mission team at Space System Loral in Palo Alto, California. Photo courtesy of SSL

Other co-investigators are David Bercovici (Yale University), Bruce Bills (JPL), Richard Binzel (Massachusetts Institute of Technology), William Bottke (Southwest Research Institute — SwRI), Ralf Jaumann (Deutsches Zentrum für Luft — und Raumfahrt), Insoo Jun (JPL), David Lawrence (Johns Hopkins University/Applied Physics Laboratory — APL), Simon Marchi (SwRI), Timothy McCoy (Smithsonian Institution), Ryan Park (JPL), Patrick Peplowski (APL), Thomas Prettyman, (Planetary Science Institute), Carol Raymond (JPL), Chris Russell (UCLA), Benjamin Weiss (MIT), Dan Wenkert (JPL), Mark Wieczorek (Institut de Physique du Globe de Paris), and Maria Zuber (MIT).

Top photo: Artist rendition of the surface of the asteroid Psyche. Image by Peter Rubin/ASU

Karin Valentine

Media Relations & Marketing manager , School of Earth and Space Exploration

480-965-9345