Featured in Planetary Science
Includes the following disciplines:
- Astrophysics
- Planetary
Bridging Exoplanet and Solar System Science


Includes the following disciplines:
- Astrophysics
- Planetary
Bridging Exoplanet and Solar System Science

Mars through the Ages

Next Frontiers in the Investigation of Extraterrestrial Organics – Part II
Study Programs

Includes the following disciplines:
- Astrophysics
- Planetary
Bridging Exoplanet and Solar System Science
In recent decades, astronomers have discovered thousands of exoplanets, some like planets within our solar system, others unlike anything in our solar system. The sample thus far exhibits significant diversity and represents an opportunity to advance…

Includes the following disciplines:
- Engineering
- Planetary
Caltech Space Challenge
For centuries, humanity has looked to the skies with curiosity and wonder, seeking to understand whether we are alone in the universe. While that question remains unanswered, our solar system offers tantalizing clues—oceans beneath icy crusts,…

Next Frontiers in the Investigation of Extraterrestrial Organics
The study of the organic inventory of planetary materials occurs at an intersection of many fields including chemistry, biology, geology, and planetary science. In recent years, simple and complex organic materials have been identified and occur…

Includes the following disciplines:
- Engineering
- Planetary
One-Shot Outer Solar System Exploration with Adaptive Space Systems
The surface and subsurface of any worlds beyond Mars still remain unexplored or underexplored. Yet it is these worlds that hold the key to some of the greatest questions in planetary science – for example, the…

Digital Twins for Solar System Exploration: Enceladus
A Digital Twin is a real-time virtual representation of a physical object, system, or process connected to its environment, which is dynamically updated with data from its physical twin throughout its lifecycle. While relatively new to…

Includes the following disciplines:
- Engineering
- Planetary
Sample Return from all across the Solar System
This study will evaluate the science case for, and feasibility of, returning samples from the surface, atmosphere, and/or plumes of planetary bodies all across the Solar System, from Mercury to Kuiper Belt Objects beyond Pluto’s orbit.…

Includes the following disciplines:
- Engineering
- Planetary
Capturing an Opportunity at Apophis
Asteroid 99942, also known as Apophis, will make a close approach to Earth on April 13, 2029, coming within 31,860 kilometers of Earth (within the geostationary belt), presenting a unique opportunity to study its characteristics and…

Determining the Interior Structure of Uranus – A Case Study for Leveraging Cross-Discipline Science to Answer Tough Questions
This Study Program will bring together theorists, observers, experimentalists, and mission architects to draft an innovative yet practical plan for determining the interior structure of Uranus. This Study will lead to a fully integrated approach, crossing…

The Biology of Biosignature Detection
The current framework for life detection for Mars exploration uses the ancient biosignatures paradigm where robust organics and former lacustrine environments provide assessments of habitability. This framework does not provide the science community with direct evidence…

Includes the following disciplines:
- Engineering
- Planetary
Enabling Fast Response Missions to NEO, ISOs, and LPCs
Long-period comets (LPCs) and interstellar objects (ISOs) are under-explored yet fascinating targets for planetary science, planetary defense, and astrophysics. LPCs contain volatiles preserved from the formation of the solar system and sampling those pristine ices would…

Includes the following disciplines:
- Engineering
- Planetary
Targeting Microhabitats for Life Detection
Current missions, such as the Perseverance rover are currently able to detect a microenvironment, but they do not have the capability to follow through with micro-targeting and microanalysis. Down-borehole ice environment mission do not have instruments…

Includes the following disciplines:
- Engineering
- Planetary
Caltech Space Challenge
“Beyond Earth, are there contemporary habitats elsewhere in the universe with necessary conditions to sustain life and do organisms live there now? [Planetary Science Decadal Survey 2011]” This question has intrigued mankind for centuries yet the…

Venus Science Enabled by Human Proximity
As early as 1956, the potential for Venus fly-bys to save fuel on human Mars missions has been recognized, and NASA’s EMPIRE studies in the 1960s frequently included Venus missions as options, both as fly-bys on…

Includes the following disciplines:
- Astrophysics
- Planetary
The Next-Generation Ground-Based Planetary Radar
Planetary radar observations have a laudable history of “firsts” including the determination of the astronomical unit at the precision sufficient for interplanetary navigation, the distribution of water at the south pole of the Moon, indications of…

Includes the following disciplines:
- Engineering
- Planetary
Non-Nuclear Exploration of the Solar System – VIRTUAL
The proposed study would investigate a system architecture with the potential to provide solar-powered transportation to the outer planets and solar power in orbit at the destination. This architecture consists of two key features: Very large,…
Final Reports

Includes the following disciplines:
- Planetary
- Engineering
Capturing an Opportunity at Apophis
Related Study: Capturing an Opportunity at Apophis

Includes the following disciplines:
- Planetary
- Astrophysics
The Next-Generation Ground-Based Planetary Radar
Related Study: The Next-Generation Ground-Based Planetary Radar

The Biology of Biosignature Detection
Related Study: The Biology of Biosignature Detection

Includes the following disciplines:
- Planetary
- Engineering
Targeting Microhabitats for Life Detection
Related Study: Targeting Microhabitats for Life Detection

Includes the following disciplines:
- Planetary
- Engineering
Enabling Fast Response Missions to NEO, ISOs, and LPCs
Related Study: Enabling Fast Response Missions to NEO, ISOs, and LPCs

Determining the Interior Structure of Uranus – A Case Study for Leveraging Cross-Discipline Science to Answer Tough Questions
Related Study: Determining the Interior Structure of Uranus - A Case Study for Leveraging Cross-Discipline Science to Answer Tough Questions

Next-Generation Planetary Geodesy
Related Study: Next-Generation Planetary Geodesy

Includes the following disciplines:
- Planetary
- Engineering
Venus In Situ Sample Capture Mission
Related Study: Venus In Situ Sample Capture Mission

Includes the following disciplines:
- Planetary
- Engineering
Revolutionizing Access to the Martian Surface
Related Study: Revolutionizing Access to the Martian Surface

Venus Science Enabled by Human Proximity
Related Study: Venus Science Enabled by Human Proximity
Workshops

Includes the following disciplines:
- Astrophysics
- Planetary
Bridging Exoplanet and Solar System Science
The primary objective of the workshop is to compare exoplanets with the planets within our solar system to advance the understanding of planetary systems in general.

Next Frontiers in the Investigation of Extraterrestrial Organics – Part II
The second week of this KISS Study aims to promote and inspire future scientific research proposals among participants, and inform the science objectives of sample return and in situ missions outlined in the Decadal report focusing on the inner solar system.

Includes the following disciplines:
- Engineering
- Planetary
One-shot Outer Solar System Exploration with Adaptive Space Systems – Part II
This KISS Study Program will aim to 1) establish the concept of software-defined space systems (SDSSs) that can adapt their functions at all levels after launch through software updates and 2) formulate a concrete one-shot multifaceted mission.

Next Frontiers in the Investigation of Extraterrestrial Organics
This workshop aims to promote and inspire future scientific research proposals among participants, and inform the science objectives of sample return and in situ missions outlined in the Decadal report. [e.g., the comet & Ceres sample return and centaur lander missions].

Includes the following disciplines:
- Engineering
- Planetary
One-shot Outer Solar System Exploration with Adaptive Space Systems
This KISS Study Program will aim to 1) establish the concept of software-defined space systems (SDSSs) that can adapt their functions at all levels after launch through software updates and 2) formulate a concrete one-shot multifaceted mission.

Digital Twins for Solar System Exploration: Enceladus – Part II
This workshop will build on the first workshop held in November 2024.

Includes the following disciplines:
- Engineering
- Planetary
Sample Return from all across the Solar System – Part II
This workshop will build on the first workshop held in September 2024.

Digital Twins for Solar System Exploration: Enceladus
A key outcome of the first workshop will be to deliver a proposed skeleton of the framework for an Enceladus Exploration Twin.

Includes the following disciplines:
- Engineering
- Planetary
Sample Return from all across the Solar System
A key outcome of the workshop will be to determine preliminary requirements on number of samples, sample acquisition, sample integrity and preservation during return, sample curation and processing, and sample analysis.

The Biology of Biosignature Detection – Part II
This workshop will integrate the proposed ordinated sets of experiments and biological measurements decided during the team’s first workshop (July 2023) into the latter two goals for this workshop series.

Determining the Interior Structure of Uranus
The workshop's final product will be a mutually-supporting list of experiments, models, and observations that will best determine Uranus's interior structure and bulk composition.

The Biology of Biosignature Detection
This workshop will develop a new framework for biological validation for future missions with science driving the instrument development.

Includes the following disciplines:
- Engineering
- Planetary
Targeting Microhabitats for Life Detection – Part II
This workshop will examine non-destructive instrumentation to detect biosignatures and sampling techniques to collect and preserve microhabitats while retaining the spatial context.

Includes the following disciplines:
- Engineering
- Planetary
Enabling Fast Response Missions to NEOs, ISOs, and LPCs
This workshop will identify the mission lifecycle changes required to explore an ISO and LPC and will dive deeper into “rapid response”, develop strategies and identify technologies to enable the up-close exploration of the next ISO or LPC discovered.

Includes the following disciplines:
- Engineering
- Planetary
Targeting Microhabitats for Life Detection
This workshop will examine non-destructive instrumentation to detect biosignatures and sampling techniques to collect and preserve microhabitats while retaining the spatial context.
Symposia

Includes the following disciplines:
- Engineering
- Planetary
Capturing an Opportunity at Apophis
The symposium will focus primarily on evaluating the expected science return from a rendezvous mission to Apophis during its close Earth flyby that is being developed jointly by Caltech, JPL and CNES, along with industry partners.
Short Courses

Includes the following disciplines:
- Astrophysics
- Planetary
Bridging Exoplanet and Solar System Science

Next Frontiers in the Investigation of Extraterrestrial Organics

Includes the following disciplines:
- Engineering
- Planetary
One Shot to Glory: Designing Adaptive Missions to the Outer Solar System and Beyond

Digital Twins for Solar System Exploration

Includes the following disciplines:
- Engineering
- Planetary
Sample Return from all across the Solar System

What Do We Know About Uranus’s Interior? Preparing for a Mission to Uranus

Parameters of Biological Validation

Includes the following disciplines:
- Engineering
- Planetary
Enabling Fast Response Missions to NEOs, ISOs, and LPCs

Includes the following disciplines:
- Engineering
- Planetary
Ocean World Microhabitats: Targeting and Life Detection Techniques

Includes the following disciplines:
- Engineering
- Planetary
Planetary Science of Venus and the Promise of In Situ Sampling Techniques
Public Lectures

Mars through the Ages
Mars has been a large focus in US planetary exploration and, more recently, of international space agencies. Space missions (with rovers, landers, and orbiters) have increased our understanding of ancient and present Mars, and whether Mars had or has conditions that would allow life to emerge and persist. Dr. Bonnie Teece will first review Martian geochemistry and the organic molecules found on its surface, detailing the preservation of ancient (billions of years old) organic molecules and whether they could be preserved today. Dr. Brandi Carrier will then review Mars missions and discuss the samples currently being collected by NASA’s Perseverance rover. She will also highlight future mission concepts and plans for Mars astrobiology.

Includes the following disciplines:
- Engineering
- Planetary
Building a Tiny Open-Source Space Program: From ChipSats to Autonomous Swarms
The aerospace industry has experienced a dramatic shift over the last decade: Flying a spacecraft has gone from something only government agencies and large corporations could afford to something universities and small startups can accomplish on a shoestring budget. This talk is about pushing these limits – building spacecraft that are dramatically smaller, simpler, and cheaper – and taking advantage of computation, networking, and autonomy to accomplish exciting new science and exploration missions, while also bringing spaceflight within reach of more people. Recent missions that will be highlighted include KickSat-2, which deployed the four-gram Sprite – the world’s smallest spacecraft; V-R3x, which demonstrated mesh networking between a group of CubeSats; and PY4, which demonstrated low-cost attitude control, formation flying, and radio-navigation capabilities on a swarm of two-kilogram satellites. Nearly all of the hardware and software created for these missions is readily available on the internet to be studied, copied, and reimagined by others.

What Makes a Model a Digital Twin? An Atmospheric Science-based Perspective
This presentation explores the evolution of digital twins from traditional modeling approaches. While models have long served as the backbone of knowledge representation and scenario development, digital twins have emerged as notable tools in the recent Artificial Intelligence/Machine Learning (AI/ML) era. Though conceptualized over three decades ago, the recent popularization of digital twins into prominence comes with hundreds of applications, accompanied by numerous definitions.

Includes the following disciplines:
- Engineering
- Planetary
Sample Return Missions from Small Bodies – Hayabusa, Hayabusa2, and Beyond
Small bodies such as asteroids and comets are believed to preserve records of the origin and early evolution of the Solar System. To demonstrate their significance, JAXA has conducted two asteroid sample return missions: the Hayabusa mission, which returned samples from the S-type asteroid Itokawa in 2010, and Hayabusa2, which delivered samples from the C-type asteroid Ryugu in 2020. In this talk, Shogo Tachibana will present the findings from these samples, compare them with those from the B-type asteroid Bennu brought back by NASA’s OSIRIS-REx mission, and discuss the achievements of small-body sample return missions. He will also share expectations for future sample return missions.

Includes the following disciplines:
- Engineering
- Planetary
Field Exploration and Life Detection Sampling through Planetary Analogue Research (FELDSPAR)
Planetary exploration missions rely on orbiters to collect large-scale data, while landed missions, constrained to footprints of a rover or lander, collect data from individual samples on the mm to cm scale. It is currently not well-constrained how biosignatures, or even habitable zones, are distributed over these spatial scales. FELDSPAR has sought to conduct field studies analogous to Mars sample return from landing site selection, in-field sample selection, remote or stand-off analysis, in situ analysis, and home laboratory (sample return) analysis. This talk will present an overview of the data collected throughout the six years of FELDSPAR studies. Volcanic regions, particularly in Iceland, have similarities to Martian terrains spectroscopically and can have exceptionally low biomass. The four field sites studied include two recent lava fields at Fimmvörðuháls and Holuhraun, a recently deglaciated plain (Mælifellssandur), and an alluvial plain (Dyngjusandur), with samples collected in nested triangular grids every order of magnitude from the 10 cm scale to the 1 km scale. In-field analyses included overhead imagery at 1 m to 200 m elevation, in-field reflectance spectroscopy and X-ray fluorescence. ATP content was analyzed in a field lab, and Raman spectroscopy, DNA content, metagenomic sequencing, and qPCR for fungal, bacterial, and archaeal DNA are ongoing in the home lab(s). Lessons learned from the various FELDSPAR rocky terrains will be presented, and their potential applicability, or lack thereof, to icy terrains will be discussed.

Journey to the Center of Mars – Scientific Results of the InSight Mission
After more than 10 years of planning, design, building and testing, InSight touched down in the Elysium Planitia region of Mars on November 26, 2018. In contrast to the 45 previous missions to Mars which have (when they survived) thoroughly explored its surface features, chemistry, atmosphere, and searched for past or present life, InSight focused for the first time on the deep interior of the planet, investigating the processes of terrestrial planet formation and evolution. Up until its demise last December from dust-covered solar arrays, it performed the first comprehensive surface-based geophysical measurements on Mars, using seismology and precision tracking to shed light on its fundamental structure, from crust to core. InSight has provided key information on the composition and structure of an Earth-like planet that has gone through most of the evolutionary stages of the Earth up to, but not including, plate tectonics. The InSight Principal Investigator will describe the mission, its science goals and some of its outstanding scientific results.

Includes the following disciplines:
- Engineering
- Planetary
Webinar: Interstellar Comets – Visitors from Another Solar System – Natural or Artificial?
The recent discovery of the first interstellar object, 1I/`Oumuamua, passing through the solar system in 2017 has provoked intense, sustained interest by the scientific community – but the interest has not always been purely scientific. `Oumuamua was visible to ground based telescopes for less than a month, and a little longer from space. After this short period of study `Oumuamua’s characteristics were quite different from what scientists expected from the first interstellar object (ISO). There have been a huge number of papers written about this one object, energizing a new interdisciplinary discussion about planet formation. ISOs enable the close up study of material from other planetary systems, allowing us to assess similarities and differences in the chemistry and physical processes driving planetary growth in other planetary systems. The second ISO, 2I/Borisov, was discovered less than 2 years after the first, much sooner than expected, and has characteristics which are very different from the first ISO, looking more like a solar system comet.

Webinar: Lunar Trailblazer – A Caltech-led Pioneering Small Satellite for Lunar Water and Lunar Geology
Lunar Trailblazer, selected in June 2019 as one of NASA's first planetary science small satellite missions, is designed to produce the best maps of water on the Moon. Led by Caltech and managed by JPL, a Lockheed Martin smallsat will carry the JPL High-resolution Volatiles and Minerals Moon Mapper (HVM3) shortwave infrared imaging spectrometer and the UK-contributed, University of Oxford/STFC RAL Space-built thermal infrared multispectral imager to 100-km lunar polar orbit. These instruments will collect data to simultaneously measure composition, temperature, and thermophysical properties of the Moon's surface.

Looking for Life As (we think) We Know It: Enceladus and Europa
As the Keck Institute for Space Studies workshop this week considers life in exotic non aqueous environments, two bodies in the outer solar system (Enceladus and Europa) host oceans of salty liquid water that are accessible, or potentially so, to spacecraft measurements. A Europa mission has just begun development and has substantial capabilities to assess ocean habitability. Enceladus appears to have a habitable ocean based on Cassini measurements, but confirmation and search for life will require a follow-on mission... one such mission has been proposed under the Discovery program.

Includes the following disciplines:
- Earth
- Planetary
Optical Remote Sensing of Earth and Planetary Surfaces
The development of space observation techniques and of user friendly software to process and handle those observations has opened a new era in geology and planetary sciences. The first global imaging systems made it possible to scan wide areas and search for promising sites for field investigations, or to get the contextual information needed to interpret local observations. As the resolution, whether spatial or spectral, and geometric accuracy improved, it became possible to make actual measurements and eventually monitor Earth surface changes. These possibilities offered new ways to investigate the geological processes at play in the landscape evolution on Earth and other planets. New opportunities are emerging, such as staring systems in particular, which will allow investigating processes and surface characteristics that cannot be observed with present systems. Rapid surface motions, such as from seismic waves, are one example.
Technical Development

Prebiotic Chemical Formation Pathways of Urea and Nucleobases

Includes the following disciplines:
- Engineering
- Planetary
Miniaturized Vacuum Electronics for Space Exploration

Includes the following disciplines:
- Engineering
- Planetary
Titan: Developing Lightweight Power Sources for In-Situ Sampling

Fiber Seismic Arrays on the Moon

Includes the following disciplines:
- Earth
- Engineering
- Planetary
Student-Led Space Exploration and Science with Small Satellites

Techniques and Technologies for Investigating the Interior Structure of Venus

In Situ Science and Instrumentation for Primitive Bodies: Constraining the Origin of the Jupiter Trojans by In Situ Measurement of Volatiles, Minerals, and Ices

Includes the following disciplines:
- Engineering
- Planetary
Characterization & Modeling of Spacecraft Regolith Interactions

Includes the following disciplines:
- Engineering
- Planetary
Asteroid Retreival

Includes the following disciplines:
- Engineering
- Planetary
Mission Concepts for Accessing and Sampling High-Risk Terrain

Includes the following disciplines:
- Engineering
- Planetary
Future Missions to Titan: Scientific and Engineering Challenges
