Related Experiment Video
Updated: Dec 23, 2025

Angle-resolved Photoemission Spectroscopy At Ultra-low Temperatures
Published on: October 9, 2012
The emergence of picokelvin physics
1Institute of Quantum Electronics, Department of Electronics, School of Electronics Engineering and Computer Science, Peking University, Beijing 100871, People's Republic of China.
None:
The frontier of low-temperature physics has advanced to the mid-picokelvin (pK) regime but progress has come to a halt because of the problem of gravity. Ultracold atoms must be confined in some type of potential energy well: if the depth of the well is less than the energy an atom gains by falling through it, the atom escapes. This article reviews ultracold atom research, emphasizing the advances that carried the low-temperature frontier to 450 pK. We review microgravity methods for overcoming the gravitational limit to achieving lower temperatures using free-fall techniques such as a drop tower, sounding rocket, parabolic flight plane and the International Space Station. We describe two techniques that promise further advancement-an atom chip and an all-optical trap-and present recent experimental results. Basic research in new regimes of observation has generally led to scientific discoveries and new technologies that benefit society. We expect this to be the case as the low-temperature frontier advances and we propose some new opportunities for research.
Related Concept Videos
Kinetic Theory of an Ideal Gas
The number of molecules in one mole is called...
Photoelectric Effect
Emission Spectra
Basic Postulates of Kinetic Molecular Theory: Particle Size, Energy, and Collision
Gas Thermometers and the Kelvin Scale
Kinetic Molecular Theory: Molecular Velocities, Temperature, and Kinetic Energy

