Daniel Y Lo
(Science Affiliate)
| Email: | yiuwahdaniel.lo@nasa.gov |
| Org Code: | |
| Address: |
NASA/GSFC Mail Code 693 Greenbelt, MD 20771 |
| Employer: | NPP POST-DOC CONTRACT |
Brief Bio
Daniel Lo is a planetary scientist with a general interest in using spacecraft observations and theoretical models to characterize the atmospheres and surfaces of terrestrial planetary bodies, and to understand the physical and chemical processes that are presently or were active in the atmosphere, on the surface, and at the atmosphere-surface interface. His current research focuses on the composition and structure of the Martian atmosphere. He has been on the science teams for the Mars Science Laboratory (Curiosity) and MAVEN missions at Mars.
Daniel is currently a NASA Postdoctoral Program Fellow.
Current Projects
Atmospheric O2 and CO at Mars
The Martian atmosphere is 95% CO2. This CO2 is continuously converted into CO, O2 and O through photodissociation by high-energy solar ultraviolet (UV) radiation, and the 3 products can react with each other directly or indirectly to be converted back into CO2, completing a cycle that maintains an equilibrium amount of CO2, O2, CO and O in the atmosphere. However, this equilibrium, and thus the processes maintaining this equilibrium, remain poorly understood. 1-D photochemical models have been underpredicting O2 and CO abundances by as much as an order of magnitude relative to the observations, while 3-D global circulation models (GCMs) generally avoid the problem by picking an initial atmosphere consistent with the observations and then evolving the atmosphere while subjecting O2 and CO to only transport effects, or taking advantage of the long photochemical lifetimes of the two species and stopping the models before instabilities set in.
In addition to model–observation disagreements on the equilibrium O2 abundance, recent observations by the Sample Analysis at Mars (SAM) and ChemCam on the Mars Science Laboratory (MSL) Curiosity rover also found significant seasonal variability in O2 abundances of as much as 50% about its mean value, much faster than the decadal timescale predicted by models. Analysis of the available oxygen sources at Mars suggests surface–atmosphere exchange could play a significant role in the overall balance of CO2, CO, O2 and O in the Martian atmosphere.
To solve this problem, we are making new measurements and analyzing data from across multiple missions (including near the surface with MSL, in the middle atmosphere with the Trace Gas Orbiter (TGO), and in the upper atmosphere with MAVEN and the Emirates Mars Mission (EMM)) to pinpoint more precisely where in the Martian atmosphere and how the models and observations disagree, and to explore what additional processes could resolve those disagreements.
Photochemical Escape of the Martian Atmosphere
Over the last 3.6 billion years ago, Mars has lost a significant fraction of its atmosphere, resulting in its transition from a warmer and wetter climate to the cold and dry environment today. One main process behind the loss of the Martian atmosphere is photochemical escape, where atmospheric species are broken up via photodissociation by solar UV radiation to form high-energy fragments, which can then escape Mars' gravity into space. Characterizing present-day escape rates is essential for building a foundation to reliably extrapolate the various loss processes back in time to ancient Mars, which had a thicker and warmer atmosphere, and orbited a younger Sun that emitted more intense UV radiation. Through my research, I have found the previously-unknown CO2 photodissociation into C and O2 to be a major contributor to the escape of C from the Mars atmosphere today, making up as much as 60% of the total photochemical escape. However, even after including this process, the predicted amount of C in the atmosphere still remains significantly less than what is measured by the Imaging UltraViolet Spectrograph (IUVS) instrument on the MAVEN spacecraft. This implies that present-day escape rates (and in turn the historical escape rates) are higher than what we are calculating from models, and we are currently exploring what can result in this discrepancy.
Positions/Employment
NASA Postdoctoral Program Fellow
N/A - GSFC
2026 - Present
Project Title: A New 4-Dimensional Multi-Instrument Perspective to an Old Problem: Mars Atmospheric O2 and Its Variability
Advisor: Alain S. J. Khayat
Research Scientist
Space Science Institute - N/A
2024 - Present
Research Fellow
University of Michigan - Ann Arbor, Michigan
2021 - 2025
Education
Doctor of Philosophy, in Planetary Sciences, with minor in Optical Sciences
The University of Arizona, USA
Master of Science, in Planetary Sciences
The University of Arizona, USA
Bachelor of Science with Honors, with double major in Physics and Planetary Science, and minor in Philosophy
California Institute of Technology, USA
Professional Service
Journal Peer Reviews
2026: Geophysical Research Letters (1), Space Science Reviews (1)
2023: Journal for Geophysical Research (1), Nature Astronomy (1)
2022: Geophysical Research Letters (1)
2021: Journal for Geophysical Research (2)
2019: Journal for Geophysical Research (1)
Lunar and Planetary Science Conference
Program committee member (2026)
Session chair for Atmospheres and Climates session (2026, 2025)
ICPAE Webinar Series (2022)
Member of 3-person team for organizing monthly webinars showcasing research on planetary and exoplanetary atmospheres from scientists across the world
NASA Review Panel
Panelist (2026, 2024)
Executive secretary (2019)
Awards
2020 - American Geophysical Union Outstanding Student Presentation Award
2019 - The University of Arizona College of Science Galileo Circle Scholarship
2018 - NASA Group Achievement Award (MAVEN Mission Team)
2018 - Lunar and Planetary Institute Career Development Award
2016 - NASA Group Achievement Award (MAVEN Science Team)
2016 - NASA Robert Hutchings Goddard Exceptional Achievement for Science (MAVEN Science Team)
2014 - The University of Arizona Lunar and Planetary Laboratory Lieutenant Colonel Kenneth Rondo Carson and Virginia Bryan Carson Graduate Fellowship
2013 - California Institute of Technology Fritz Burns Prize in Geology
Grants
The Mystery of CO in the Martian Atmosphere
Mars Data Analysis Program - NASA (NNH24ZDA001N) - Awarded: 2024-05-13
Dates: -
Photochemical Escape of Atomic Carbon from Mars
Solar System Workings - NASA (NNH22ZDA001N-SSW) - Awarded: 2023-09-28
Dates: -
Talks, Presentations and Posters
Invited
Carbon at Mars: Inventory and loss
April 2022
Jet Propulsion Laboratory Mars Forum
Carbon photochemical escape from the Martian atmosphere: Updates and future directions
December 2021
American Geophysical Union Fall Meeting
Other
The Martian hot carbon corona: Structure, escape and variability from coupled 3-D models
March 2026
Lunar and Planetary Science Conference
New observations of Martian atmospheric composition by MSL SAM
March 2025
Lunar and Planetary Science Conference
New observations of Martian atmospheric composition by Curiosity SAM
December 2024
American Geophysical Union Annual Meeting
MSL SAM measurements of Martian atmospheric composition: An update
July 2024
Tenth International Conference on Mars
Recent observations of the Martian atmospheric composition by Curiosity SAM
December 2023
American Geophysical Union Fall Meeting
Observing the Martian atmosphere in the ultraviolet: Science updates from MAVEN IUVS
July 2023
Asia Oceania Geosciences Society 20th Annual Meeting
Evaluating atmospheric and surface drivers for the O2 variations observed by MSL SAM at Gale crater
July 2023
Asia Oceania Geosciences Society 20th Annual Meeting
Evaluating atmospheric and surface drivers for atmospheric O2 variations at Gale crater as observed by MSL SAM
March 2023
Lunar and Planetary Science Conference
Evaluating atmospheric and surface drivers for O2 variations at Gale crater as observed by MSL SAM
December 2022
American Geophysical Union Fall Meeting
What can drive the atmospheric O2 variations observed by MSL SAM?
August 2022
Asia Oceania Geosciences Society 19th Annual Meeting
What can drive the atmospheric O2 variations observed by MSL SAM?
March 2022
Lunar and Planetary Science Conference
Direct detection of atomic carbon and implications on photochemical escape from MAVEN/IUVS observations of C I 156.1 nm and 165.7 nm dayglow
December 2021
American Geophysical Union Fall Meeting
Carbon photochemical escape rates from the modern Mars atmosphere
December 2020
American Geophysical Union Fall Meeting
Carbon photochemical escape rates from the modern Mars atmosphere
December 2019
American Geophysical Union Fall Meeting
An ultraviolet perspective of the dynamic atmosphere of Mars: Highlights from four years of observations from the MAVEN Imaging UltraViolet Spectrograph
July 2019
Asia Oceania Geosciences Society 16th Annual Meeting
Modern carbon photochemical escape rates at Mars based on MAVEN observations
July 2019
Asia Oceania Geosciences Society 16th Annual Meeting
Carbon photochemistry and densities in the Martian atmosphere under MAVEN Deep Dip 2 conditions
December 2018
American Geophysical Union Fall Meeting
Modeling carbon production and densities in the Martian atmosphere under MAVEN Deep Dip 2 conditions
March 2018
Lunar and Planetary Science Conference
MAVEN IUVS observations of C I Emissions at 156.1 nm and 165.7 nm
May 2017
Mars Aeronomy Conference
Twilight limb observations of the Martian north polar hood by MAVEN IUVS
October 2016
Division of Planetary Science/European Planetary Science Conference
Twilight limb observations of aerosols in the Martian atmosphere by MAVEN IUVS
March 2016
Lunar and Planetary Science Conference
Tides in the Martian atmosphere as observed by MAVEN IUVS
December 2015
American Geophysical Union Fall Meeting