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Atomic and Laser Physics
Credit: Jack Hobhouse

Professor Christopher Foot

Professor of Physics

Research theme

  • Quantum optics & ultra-cold matter

Sub department

  • Atomic and Laser Physics

Research groups

  • Ultracold quantum matter
  • AION/Magis
Christopher.Foot@physics.ox.ac.uk
Telephone: 01865 (2)72256
Clarendon Laboratory, room 161
  • About
  • Publications

RADIATION FORCE IN THE MAGNETOOPTICAL TRAP

JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS 9:12 (1992) 2142-2158

Authors:

AM STEANE, M CHOWDHURY, CJ FOOT
More details from the publisher

Unnatural selection

Nature Springer Nature 351:6327 (1991) 521-522

Authors:

Christopher Foot, Andrew Steane
More details from the publisher

LASER COOLING AND TRAPPING OF ATOMS

CONTEMPORARY PHYSICS 32:6 (1991) 369-381
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LASER COOLING BELOW THE DOPPLER LIMIT IN A MAGNETOOPTICAL TRAP

EUROPHYSICS LETTERS 14:3 (1991) 231-236

Authors:

AM STEANE, CJ FOOT
More details from the publisher

Observation of the 1S-2S transition in atomic hydrogen in an atomic beam

Journal of Physics B: Atomic, Molecular and Optical Physics 23:11 (1990)

Authors:

CJ Foot, P Hannaford, DN Stacey, CD Thompson, GH Woodman, PEG Baird, JB Swan, GK Woodgate

Abstract:

The authors report the observation of the 1S-2S two-photon transition in atomic hydrogen in an atomic beam, excited by light from a narrow-band continuous-wave laser. The excitation takes place in a collision-free environment and detection of the resonance is carried out by Stark-quenching the metastable atoms some distance from the interaction region. This approach removes the limitations of cell excitation employed in previous experiments with continuous-wave lasers, and should allow the full precision of modern tunable laser techniques to be applied to the 1S-2S transition. It also gives a new method for producing a collimated beam of metastable atoms which has particular applications to a variety of future experiments with cold hydrogen.
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