Why the Moon's South Pole Has Become the Most Contested Patch of Lunar Real Estate
Aishwarya Kapoor | Times Life Bureau | Jul 29, 2026, 07:55 IST
Why the Moon's South Pole Has Become the Most Contested Patch of Lunar Real Estate
Image credit : Times Life Bureau
Billions of years of shadow have kept water ice locked inside craters at the Moon's south pole, and every major space agency, including ISRO, now wants it. The ice isn't a curiosity. It is rocket fuel, drinking water, and the reason the next lunar landing sites are all clustering around the same frozen patch of ground.
The coldest place in the solar system is on the Moon
NASA's LCROSS mission confirmed this in 2009 by deliberately crashing a rocket stage into the Cabeus crater near the south pole and analysing the debris plume. Spectrometers detected water vapour, ice crystals, and several other volatiles. The quantity wasn't trivial: estimates from subsequent orbital data suggest the lunar south pole region may hold hundreds of millions of tonnes of water ice. India's own Chandrayaan-1, launched in 2008, had already provided key data through its Moon Mineralogy Mapper instrument, which detected hydroxyl and water molecules across the lunar surface, a finding that shifted the entire scientific consensus about a dry Moon.
Ice means fuel, not just water
Drinking water and radiation shielding are secondary gains. Water is also an effective barrier against cosmic radiation, so ice-derived water packed around habitat walls would protect crews during long surface stays. The south pole's elevated terrain, ridges and crater rims that catch near-continuous sunlight, also makes solar power generation viable right next to the PSRs. You get permanent shadow for ice storage and near-permanent sun for electricity within a few kilometres of each other. That combination does not exist anywhere else on the Moon.
Where Chandrayaan-3 fits into this
ISRO's future plans include Chandrayaan-4, which is being designed as a sample-return mission, and a collaborative lunar polar exploration mission with JAXA, the Japanese space agency, called LUPEX. LUPEX is specifically designed to drive a rover into shadowed regions and drill into the regolith to measure subsurface water ice content directly. The data it returns will determine whether the ice is accessible enough to mine.
The crowded south pole
The legal situation is genuinely unresolved. The 1967 Outer Space Treaty prohibits national sovereignty over the Moon but does not clearly address resource extraction. The United States-led Artemis Accords, which India signed in 2023, establish a framework for safety zones and resource use, but they are bilateral agreements, not binding international law. China and Russia have not signed them. The question of who can mine lunar ice, and under what rules, remains open, and the answer will matter enormously once the technology to do so actually exists.
What the ice changes about the Moon
ISRO's incremental approach to this, from Chandrayaan-1's water detection to Chandrayaan-3's polar landing to the planned LUPEX ice-prospecting mission, reflects a considered path toward that infrastructure role. India did not get to the south pole first by accident. The scientific case for the pole has been clear since 2009. The Chandrayaan programme was built around it.
The south pole's ice, the solar power on its ridges, and the permanently shadowed craters holding both together form a system that no other location on the Moon replicates. Every mission now converging on those coordinates is converging on the same underlying logic: the Moon's value as a platform for the rest of space depends almost entirely on what is frozen in those lightless basins. The race to the south pole is not about the Moon. It is about everywhere beyond it.