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Cold Atom Lab Upgrade Studies Dark Matter, Quantum Physic...
Cinnamon Pri · 2026-04-28 · via NASA Science

Principal Investigator(s): 

  • Jason Williams, NASA’s Jet Propulsion Laboratory 

Overview: 

The Cold Atom Laboratory examines investigates quantum phenomena by cooling atoms to near absolute zero. Two hardware upgrades launched on NG-24 expand the laboratory's capabilities on the International Space Station. The SM-3X module collects more atoms and provides greater flexibility for quantum experiments, while the HXM-1 module upgrades the electronics powering the magnetic systems to support the new capabilities. NG-24 is scheduled to be the final resupply mission for the Cold Atom Laboratory. 

Science objectives: 

  • Create Bose-Einstein Condensates (a state of matter where quantum properties become visible at larger scales) five times larger than previous modules  
  • Study ultra-cold Potassium and Rubidium atoms in microgravity  
  • Test Einstein's relativity principles and investigate fundamental questions about dark matter and dark energy 

Potential Earth applications: 

  • May be a stepping stone to future understanding of atomic behaviors and how to harness atomic states for humanity 
  • Could help support a quantum economy, including new technologies for space navigation, quantum computing, and quantum communications 
  • Aims to advance fundamental understanding of quantum phenomena with applications across multiple fields 

Potential space applications: 

  • Could enable high-precision navigation technologies for deep space missions  
  • May advance fundamental understanding of gravity and time relevant to long-duration spaceflight  
  • Aims to support development of quantum-based systems for future exploration missions 

Biological & Physical Sciences Division

  • NASA’s Biological and Physical Sciences Division pioneers scientific discovery and enables exploration by using space environments to conduct investigations not possible on Earth. Studying biological and physical phenomenon under extreme conditions allows researchers to advance the fundamental scientific knowledge required to go farther and stay longer in space, while also benefitting life on Earth.