1,699
Views
5
CrossRef citations to date
0
Altmetric
Cold Atoms and Molecules

Matterwave interferometric velocimetry of cold Rb atoms

, , , &
Pages 657-666 | Received 31 Jul 2017, Accepted 27 Sep 2017, Published online: 17 Nov 2017

References

  • Berman, P.R. Atom Interferometry; Academic Press, New York, 1996.
  • Miffre, A.; Jacquey, M.; Büchner, M.; Trénec, G.; Vigué, J. Atom Interferometry. Phys. Scr. 2006, 74, C15–C23.
  • Weitz, M.; Hänsch, T.W. Frequency-independent Laser Cooling Based on Interferometry. Europhys. Lett. 2000, 49 (3), 302–308.
  • Dunning, A.; Gregory, R.; Bateman, J.; Himsworth, M.; Freegarde, T. Interferometric Laser Cooling of Atomic Rubidium. Phys. Rev. Lett. 2015, 115, 073004.
  • Weiss, D.S.; Young, B.C.; Chu, S. Precision Measurement of the Photon Recoil of an atom using atomic interferometry. Phys. Rev. Lett. 1993, 70 (18), 2706–2709.
  • Shirley, J.H. Velocity Distributions Calculated from the Fourier Transforms of Ramsey Lineshapes. IEEE Trans. Instrum. Meas. 1997, 46 (2), 117–121.
  • Knorr, F.J.; Ajami, M.; Chatfield, D.A. Fourier Transform Time-of-flight Mass Spectrometry. Anal. Chem. 1986, 58, 690–694.
  • Gustavson, T.L. Precision Rotation Sensing Using Atom Interferometry. Ph.D. Thesis, Stanford University, 2000.
  • Barnett, S.M. On the Recoil and Doppler Shifts. J. Mod. Opt. 2010, 57 (14–15), 1445–1447.
  • Feynman, R.P. Space-time Approach to Non-relativistic Quantum Mechanics. Rev. Mod. Phys. 1948, 20 (2), 367–387.
  • Storey, P.; Cohen-Tannoudji, C. The Feynman Path Integral Approach to Atomic Interferometry. A Tutorial. J. Phys. II France 1994, 4 (11), 1999–2027.
  • Bongs, K.; Launay, R.; Kasevich, M.A. High-order Inertial Phase Shifts for Time-domain Atom Interferometers. Appl. Phys. B 2006, 84, 599–602.
  • Sobel, D. Longitude: The True Story of a Lone Genius Who Solved the Greatest Scientific Problem of His Time; Walker Publishing Co., New York, 1995.
  • Preclíková, J.; Kozák, M.; Fregenal, D.; Hansen, J.P. Optical Velocity Meter Based on Ramsey Oscillations in a Double-grating Setup. Phys. Rev. A 2014, 89, 043406.
  • Feynman, R.P.; Leighton, R.B.; Sands, M. Lectures on Physics; Addison-Wesley: Reading. MA 1963, 1, 34–10.
  • Hinds, E.A.; Barnett, S.M. Momentum Exchange between Light and a Single Atom: Abraham or Minkowski? Phys. Rev. Lett. 2009, 102, 050403.
  • Feynman, R.P.; Vernon, F.L.; Hellwarth, R.W. Geometrical Representation of the Schrödinger Equation for Solving Maser Problems. J. Appl. Phys. 1957, 28 (1), 49–52.
  • Cronin, A.D.; Schmiedmayer, J.; Pritchard, D.E. Optics and Interferometry with Atoms and Molecules. Rev. Mod. Phys. 2007, 81, 1051–1129.
  • Hughes, I.G. Velocity Selection in a Doppler-broadened Ensemble of Atoms Interacting with a Monochromatic Laser Beam. J. Mod. Opt. 2017.
  • Bateman, J.; Freegarde, T. Fractional Adiabatic Passage in Two-level Systems: Mirrors and Beam-splitters for Atomic Interferometry. Phys. Rev. A 2007, 76, 013416.
  • Kasevich, M.; Weiss, D.S.; Riis, E.; Moler, K.; Kasapi, S.; Chu, S. Atomic Velocity Selection Using Stimulated Raman Transitions. Phys. Rev. Lett. 1991, 66 (18), 2297–2300.
  • Cooper, N.; Woods, J.; Bateman, J.; Dunning, A.; Freegarde, T. A Stabilised Fiber-optic Mach-Zehnder Interferometer for carrier-frequency rejection. Appl. Opt. 2013, 52, 5713.
  • Boutu, W.; Auguste, T.; Boyko, O.; Sola, I.; Balcou, P.; Binazon, L.; Gobert, O.; Merdji, H.; Valentin, C.; Constant, E.; et al. High-order-harmonic Generation in Gas with a Flat-top Laser Beam. Phys. Rev. A 2011, 84, 063406–063415.
  • Townsend, C.G.; Edwards, N.H.; Cooper, C.J.; Zetie, K.P.; Foot, C.J.; Steane, A.M.; Szriftgiser, P.; Perrin, H.; Dalibard, J. Phase-space Density in the Magneto-optical Trap. Phys. Rev. A 1995, 52 (2), 1423–1440.
  • Dunning, A.J. Coherent Atomic Manipulation and Cooling Using Composite Optical Pulse Sequences. Ph.D. Thesis, University of Southampton, 2014.
  • Westbrook, C.I.; Watts, R.N.; Tanner, C.E.; Rolston, S.L.; Phillips, W.D.; Lett, P.D.; Gould, P.L. Localization of Atoms in a Three-dimensional Standing Wave. Phys. Rev. Lett. 1990, 65 (1), 1990.
  • Courtois, J.Y.; Grynberg, G.; Lounis, B.; Verkerk, P. Recoil-induced Resonances in Cesium: An Atomic Analog to the Free-electron Laser. Phys. Rev. Lett. 1994, 72 (19), 3017–3020.
  • Lett, P.D.; Watts, R.N.; Westbrook, C.I.; Phillips, W.D.; Gould, P.L.; Metcalf, H.J. Observation of Atoms Laser Cooled below the Doppler Limit. Phys. Rev. Lett. 1988, 61 (2), 169–172.
  • Chu, S.; Hollberg, L.; Bjorkholk, J.E.; Cable, A.; Ashkin, A. Three-dimensional Viscous Confinement and Cooling of Atoms by Resonance Radiation Pressure. Phys. Rev. Lett. 1985, 55 (1), 48–51.
  • Goodwin, J.F.; Stutter, G.; Thompson, R.C.; Segal, D.M. Resolved-sideband Laser Cooling in a Penning Trap. Phys. Rev. Lett. 2016, 116, 143002.
  • Thompson, R.C.; Dholakia, K.; Hernandez-Pozos, J.L.; Horvath, G.Z.K.; Rink, J.; Segal, D.M. Spectroscopy and Quantum Optics with Ion Traps. Phys. Scr. 1997, T72, 24–33.
  • Freegarde, T.; Daniell, G.; Segal, D. Coherent Amplification in Laser Cooling and Trapping. Phys. Rev. A 2006, 73, 033409.
  • Freegarde, T.; Segal, D. ‘Algorithmic Cooling’ in a Momentum State Quantum Computer. Phys. Rev. Lett. 2003, 91, 037904.
  • Segal, D.M.; Wunderlich, C. Cooling Techniques for Trapped Ions. In Physics with Trapped Charged Particles; Knoop, M., Madsen, N. and Thompson, R.C., Eds.; Imperial College Press, 2014; pp 43–81.
  • Koo, K.; Sudbery, J.; Segal, D.M.; Thompson, R.C. Doppler Cooling of Ca+ Ions in a Penning Trap. Phys. Rev. A 2004, 69 (4), 043402.
  • Dunning, A.; Gregory, R.; Bateman, J.; Cooper, N.; Himsworth, M.; Freegarde, T.; Jones, J. Composite Pulses for Interferometry in a Thermal Cold Atom Cloud. Phys. Rev. A 2014, 90, 033608.