Craig M. Savage
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Craig M. Savage

Position

  • Reader

Qualifications

  • D.Phil.



Contact Details

ARC COE for Quantum-Atom Optics
Building 38A
Faculty of Science
Science Road
The Australian National University
Canberra ACT 0200
AUSTRALIA

Office: Rm. 112, Building 38a
Tel: (+61-2) 6125 4202
Fax: (+61-2) 6125 0741
Personal Webpage
Email: craig.savageanu.edu.au

Research Interests

  • Atom Lasers
  • Theory and Applications of Bose-Einstein Condensation
  • Quantum Field Theory
  • Topological Structures in Field Theory
  • Computational Physics
  • Analogues to quantum field theory in curved spacetime

Selected Publications

  • Numerical Study of the stability of Skyrmions in Bose-Einstein Condensates,
    S. Wüster, T.E. Argue and C. M. Savage,
    Phys. Rev. A 72, 043616 (2005).
  • Superradiant scattering from a hydrodynamic vortex,
    T. R. Slatyer and C. M. Savage,
    Classical and Quantum Gravity 22, 3833 (2005).
  • Collapsing Bose-Einstein condensates beyond the Gross-Pitaevskii approximation,
    S. Wüster, J. J. Hope, C. M. Savage, Phys. Rev. A 71, 033604 (2005).
  • Energetically stable particle-like Skyrmions in a trapped Bose-Einstein condensate.
    C.M. Savage and J. Ruostekoski, Phys. Rev. Lett. 91, 010403 (2003).
  • Bose-Einstein condensate collapse: a comparison between theory and experiment.
    C. M. Savage, N.P. Robins, and J.J. Hope, Phys. Rev. A 67, 014304 (2003).
  • Macroscopic quantum superposition states in Bose-Einstein condensates: Decoherence and many modes.
    P.J.Y. Louis, P.M.R. Brydon, and C.M. Savage, Phys. Rev. A 64, 053613 (2001).
  • Creating macroscopic quantum superpositions with Bose-Einstein condensates.
    D. Gordon and C.M. Savage , Phys. Rev. A 59, 4623 (1999).
  • Pumping two dilute gas Bose-Einstein condensates with Raman light scattering.
    C.M. Savage, J. Ruostekoski, D.F. Walls, Phys. Rev. A 57, 3805 (1998).
  • Stimulation of beta decay due to a Bose-Einstein condensate.
    J. Hope and C.M. Savage, Phys. Lett. A 222, 87 (1996).
  • Bound states of two-dimensional nonuniform waveguides.
    M. Andrews and C.M. Savage, Phys. Rev. A 50, 4335 (1994).
  • Coherent atomic waveguides from hollow optical fibers: quantized atomic motion.
    S. Marksteiner, C.M. Savage, P. Zoller, S. Rolston, Phys. Rev. A 50, 2680 (1994).
  • Producing squeezed light from conventionally pumped lasers.
    T. Ralph and C.M. Savage, JOSA B 9, 1895 (1992).
  • One atom lasers,
    Yi Mu and C.M. Savage, Phys. Rev. A 46, 5944 (1992).

 
 

Last updated: November 19, 2009
Designed and maintained by: Paul Schwenn (schwennphysics.uq.edu.au)
Contents coordinator and supervisor: Karen Kheruntsyan (kheruntsphysics.uq.edu.au)