Gateway Hardware Becomes Three Lunar Infrastructure Demos
NASA’s decision to move away from the orbiting Gateway station has a concrete next chapter. On Tuesday, the agency announced it is working with Northrop Grumman to transform the HALO (Habitation And Logistics Outpost) module into a trio of Lunar Infrastructure Demo missions — LID-1, LID-2 and LID-3 — designed to test technologies for long-term crew survival at the Moon’s South Pole.
“Our ready-to-fly, reliable HALO technologies allow NASA to move faster, putting in place robust infrastructure that can endure the lunar night and establish a strong blueprint for a future Moon Base,” said David Schiller, vice president of civil space and sciences at Northrop Grumman.
Elsewhere on the Artemis file, NASA reported that Artemis III is taking shape, with the Orion spacecraft coming together and key SLS hardware reaching important milestones over the past month. Engineers at NASA Ames have also been working with SpaceX on a test series to characterise the extreme aerodynamic forces the Super Heavy Version 3 booster can experience during re-entry, work that feeds directly into Artemis III landing system design.
In a related delivery, NASA handed a mini navigation receiver to Intuitive Machines for integration onto the upcoming Altus-1 lunar relay. Altus-1 will enable communication with missions exploring the lunar South Pole and the far side of the Moon.
Four Commercial Partners Race Toward 2028 Moon Base Landings
NASA’s Tuesday Moon Base update named four commercial partners — Blue Origin, Firefly Aerospace, Intuitive Machines and Voyager Lunar Systems — as working toward delivering cargo landers by 2028. Phase I of the Moon Base architecture, running through 2029, includes more than twenty robotic landings, each designed to validate system capabilities for those that follow.
Before astronauts arrive, robotic missions will deploy scientific instruments to characterise the lunar environment, test new technologies, and begin assembling infrastructure for human habitation. Recurring deliveries under NASA’s Commercial Lunar Payload Services initiative are intended to build a dependable lunar supply chain.
The LID missions dovetail with this architecture. LID-1, LID-2 and LID-3 reuse HALO-derived technologies to mature lunar surface power, thermal management, autonomy, communications and hosted payload services that can survive the lunar night and scale into persistent infrastructure near the South Pole.
Perseverance Watches Earth Vanish Behind Phobos
NASA’s Perseverance rover captured a first: on July 2, 2026 — sol 1,907 of the mission — the Mastcam-Z instrument photographed Earth passing behind the Martian moon Phobos. It is the first time humanity has made an observation from the surface of another planet showing Earth disappearing behind a celestial body.
The composite of seven images shows Earth as a small bright dot moving from upper left to lower right before being occulted by Phobos. Image processing removed extraneous background light to enhance detail.
In other Mars news, Curiosity marked its 14th anniversary on the Red Planet this week. In 14 years on Mars, the rover has taken more than 700,000 images. JPL also showcased SkyFall, a Mars helicopter demo carrying a flexible ground-penetrating radar antenna designed to hunt for frozen water beneath the Martian surface — a critical resource for future astronauts.
IXPE Finds Vacuum Birefringence, PUNCH Sharpens Solar Forecasting
A first-of-its-kind measurement by the Imaging X-ray Polarimetry Explorer may have captured empty space behaving in a way physicists have predicted for 90 years but never directly observed. IXPE studied magnetar 1E 1547.0-5408, a rapidly rotating neutron star with magnetic fields over a trillion times stronger than Earth’s. The results, published Wednesday in Nature, provide what the mission team calls the most definitive signal to date of vacuum birefringence, a long-sought prediction of quantum electrodynamics.
In heliophysics, scientists using NASA’s PUNCH mission predicted the near-Earth arrival of a solar eruption to within 30 minutes in an initial proof-of-concept test. Results presented Tuesday at the Committee on Space Research Scientific Meeting and under review at Space Weather could reshape storm forecasting. “We thought PUNCH would be good at this, but it’s a stunning result,” said principal investigator Craig DeForest of Southwest Research Institute. “This could be the space weather equivalent of going from a steam engine to a modern internal combustion engine.”
PUNCH, launched in 2025, uses four spacecraft in low Earth orbit to make continuous 3D observations of the inner solar system, capturing a new image every four minutes. Before PUNCH, coronal mass ejections could only be tracked for about one-fifth of their journey from Sun to Earth.
In deep-space operations, JPL engineers freed up power on Voyager 2 by simultaneously turning off certain devices and substituting them with lower-power alternatives. And Deep Space Station 23, a 34-metre beam-waveguide dish, began operations at the Goldstone complex in California on Monday, strengthening the Deep Space Network’s ability to support missions operating billions of miles from Earth.
Meir and Menon Spacewalk Preps Station for IROSA
NASA astronauts Jessica Meir and Anil Menon completed a six-and-a-half-hour spacewalk on Thursday, installing hardware that will modify the station’s 3B power channel and prepare it for the future installation of an International Space Station Roll-Out Solar Array. The IROSA will provide additional power to support critical station operations, including its safe and controlled deorbit.
The spacewalk began at 8:33 a.m. EDT and concluded at 3 p.m. EDT.
The Expedition 75 crew also continued preparations for the arrival of SpaceX Crew-13. The mission’s four-person crew — NASA astronaut Jessica Watkins (commander), NASA astronaut Luke Delaney (pilot), CSA astronaut Joshua Kutryk (mission specialist), and Roscosmos cosmonaut Sergey Teteryatnikov (mission specialist) — held press conferences from Johnson Space Center earlier in the week.
NASA astronaut Chris Williams held a post-flight news conference on Tuesday after living and working in space for 241 days aboard the station. The crew also continued work with ADSEP, an autonomous experiment platform that has grown high-quality crystals, studied tiny particles, and cultured cells in microgravity.
Solar Eclipse, SpaceX Moon Impact, and a Mars AMA
On August 12, a total solar eclipse will cross Iceland and Spain. NASA will stream live starting at 1:15 p.m. ET (1715 UTC), bringing the views and the science to viewers worldwide since the U.S. will not see totality this time.
In the early hours of Wednesday, August 5, a portion of a SpaceX rocket impacted the Moon’s surface. NASA released a video addressing public questions about the event.
NASA also hosted a Reddit AMA on Wednesday covering fifty years of Martian exploration, with scientists fielding questions on the past, present, and future of the Red Planet.
Provider: National Aeronautics and Space Administration Date: June 30, 2027 Time: 12:00 AM UTC Vehicle: Space Launch System (SLS)
Artemis III is the second crew mission as part of the Artemis program. Artemis III will send a crew of 4 on a Low Earth Orbit mission, with the Orion rendezvous and dock with one or both commercial lunar landers in development by SpaceX and Blue Origin, performing in-space tests of the docked vehicles, integrated checkout of life support, communications, and propulsion systems, as well as tests of the new Extravehicular Activity (xEVA) suits.
Artemis IV
Provider: National Aeronautics and Space Administration Date: June 30, 2028 Time: 12:00 AM UTC Vehicle: Space Launch System (SLS)
Artemis IV is planned to be the first human lunar landing mission since the Apollo Program.
Artemis V
Provider: National Aeronautics and Space Administration Date: December 31, 2028 Time: 12:00 AM UTC Vehicle: Space Launch System (SLS)
Artemis V is planned to be the second human lunar landing mission since the Apollo Program.
SLS Block 1B | Artemis VI
Provider: National Aeronautics and Space Administration Date: September 30, 2030 Time: 12:00 AM UTC Vehicle: Space Launch System (SLS)
No description available
SLS Block 1B | Artemis VII
Provider: National Aeronautics and Space Administration Date: September 30, 2031 Time: 12:00 AM UTC Vehicle: Space Launch System (SLS)
No description available
Artemis III ×
Mission Details
TypeHuman Exploration
OrbitLow Earth Orbit
TargetEarth
Artemis III is the second crew mission as part of the Artemis program. Artemis III will send a crew of 4 on a Low Earth Orbit mission, with the Orion rendezvous and dock with one or both commercial lunar landers in development by SpaceX and Blue Origin, performing in-space tests of the docked vehicles, integrated checkout of life support, communications, and propulsion systems, as well as tests of the new Extravehicular Activity (xEVA) suits.
Agencies Involved
• National Aeronautics and Space Administration (Government)
Program: Artemis
The Artemis program is a US government-funded crewed spaceflight program that has the goal of landing “the first woman and the next man” on the Moon, specifically at the lunar south pole region.
The Space Launch System (SLS) is an American Space Shuttle-derived heavy expendable launch vehicle. It is part of NASA’s deep space exploration plans including as the main launch vehicle of the Artemis program. SLS follows the cancellation of the Constellation program, and is to replace the retired…
The Orion Multi-Purpose Crew Vehicle (Orion MPCV) is an American spacecraft intended to carry a crew of four astronauts to destinations at or beyond low Earth orbit (LEO). Currently under development by NASA for launch on the Space Launch System, Orion is intended to facilitate human exploration of asteroids and of Mars, as well as to provide a means of delivering or retrieving crew or supplies from the ISS if needed.
Capability
Lunar Missions.
Details
The Orion MPCV takes basic design elements from the Apollo Command Module that took astronauts to the moon, but its technology and capability are more advanced. It is designed to support long-duration deep space missions, with up to 21 days active crew time plus 6 months quiescent. During the quiescent period crew life support would be provided by another module such as a Deep Space Habitat. The…
Flight Life
21.1 days
Manufacturer: National Aeronautics and Space Administration (NASA)
NASA • American • Age: 58 • Time in space: 149 Days, 12 Hours, 12 Minutes • EVA time: 1 Day, 8 Hours
Born: Sep 11, 1967 • First Flight: Nov 16, 2009 • Last Flight: Jul 28, 2017
Randolph James “Komrade” Bresnik is an officer in the United States Marine Corps and a NASA astronaut. A Marine Aviator by trade, Bresnik was selected as a member of NASA Astronaut Group 19 in May 2004.[5] First launched to space on STS-129.
ESA • Italian • Age: 49 • Time in space: 366 Days, 23 Hours, 2 Minutes • EVA time: 1 Day, 9 Hours, 9 Minutes
Born: Sep 27, 1976 • First Flight: May 28, 2013 • Last Flight: Jul 20, 2019
Luca Parmitano (born 27 September 1976 in Paternò, Sicily) is an Italian engineer and astronaut in the European Astronaut Corps for the European Space Agency (ESA). The astronauts work on missions at the International Space Station. He was selected as an ESA astronaut in May 2009.
Artemis IV is planned to be the first human lunar landing mission since the Apollo Program.
Agencies Involved
• National Aeronautics and Space Administration (Government)
Program: Artemis
The Artemis program is a US government-funded crewed spaceflight program that has the goal of landing “the first woman and the next man” on the Moon, specifically at the lunar south pole region.
The Space Launch System (SLS) is an American Space Shuttle-derived heavy expendable launch vehicle. It is part of NASA’s deep space exploration plans including as the main launch vehicle of the Artemis program. SLS follows the cancellation of the Constellation program, and is to replace the retired…
Artemis V is planned to be the second human lunar landing mission since the Apollo Program.
Agencies Involved
• National Aeronautics and Space Administration (Government)
Program: Artemis
The Artemis program is a US government-funded crewed spaceflight program that has the goal of landing “the first woman and the next man” on the Moon, specifically at the lunar south pole region.
The Space Launch System (SLS) is an American Space Shuttle-derived heavy expendable launch vehicle. It is part of NASA’s deep space exploration plans including as the main launch vehicle of the Artemis program. SLS follows the cancellation of the Constellation program, and is to replace the retired…
The Artemis program is a US government-funded crewed spaceflight program that has the goal of landing “the first woman and the next man” on the Moon, specifically at the lunar south pole region.
The Space Launch System (SLS) is an American Space Shuttle-derived heavy expendable launch vehicle. It is part of NASA’s deep space exploration plans including as the main launch vehicle of the Artemis program. SLS follows the cancellation of the Constellation program, and is to replace the retired…
The Artemis program is a US government-funded crewed spaceflight program that has the goal of landing “the first woman and the next man” on the Moon, specifically at the lunar south pole region.
The Space Launch System (SLS) is an American Space Shuttle-derived heavy expendable launch vehicle. It is part of NASA’s deep space exploration plans including as the main launch vehicle of the Artemis program. SLS follows the cancellation of the Constellation program, and is to replace the retired…
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