The Experts below are selected from a list of 60 Experts worldwide ranked by ideXlab platform

Luis A. Orozco - One of the best experts on this subject based on the ideXlab platform.

  • LASER TRAPPING OF Radioactive AtomS
    Annual Review of Nuclear and Particle Science, 1997
    Co-Authors: G. D. Sprouse, Luis A. Orozco
    Abstract:

    ▪ Abstract Light forces acting on Radioactive Atoms confine them in cold samples of large phase space density. We describe the processes of Radioactive Atom production, reduction of their velocity, and capture. The trapped Atoms form excellent sources for the study of Atomic parity non-conservation, β decay and α decay asymmetries, and other weak interactions.

G. D. Sprouse - One of the best experts on this subject based on the ideXlab platform.

  • LASER TRAPPING OF Radioactive AtomS
    Annual Review of Nuclear and Particle Science, 1997
    Co-Authors: G. D. Sprouse, Luis A. Orozco
    Abstract:

    ▪ Abstract Light forces acting on Radioactive Atoms confine them in cold samples of large phase space density. We describe the processes of Radioactive Atom production, reduction of their velocity, and capture. The trapped Atoms form excellent sources for the study of Atomic parity non-conservation, β decay and α decay asymmetries, and other weak interactions.

M. A. Rowe - One of the best experts on this subject based on the ideXlab platform.

  • Prospects in Radioactive Atom trapping: {sup 21}Na as an example
    1997
    Co-Authors: S.j. Freedman, B. Fujikawa, G. Gwinner, M. A. Rowe
    Abstract:

    Recent demonstrations that laser trapping and cooling techniques are applicable to exotic short-lived Radioactive Atoms are providing new opportunities for better measurements of important fundamental constants and more sensitive searches for physics beyond the presently established Standard Model of the fundamental interactions. The application of laser techniques to control the spatial extent and degree of polarization of essentially massless Radioactive sources in beta-decay experiments should allow studies of the symmetries of the weak interactions with unprecedented precision. Experiments with rare Atoms having particular sensitivities to subtle weak-interaction modifications to Atomic structure should be practical with laser manipulation techniques. We review some of the prospects in this emerging area of experimental research and we describe an example of an ongoing experiment to study the beta decay of the short-lived isotope {sup 21}Na.

  • prospects in Radioactive Atom trapping sup 21 na as an example
    1997
    Co-Authors: S.j. Freedman, B. Fujikawa, G. Gwinner, M. A. Rowe
    Abstract:

    Recent demonstrations that laser trapping and cooling techniques are applicable to exotic short-lived Radioactive Atoms are providing new opportunities for better measurements of important fundamental constants and more sensitive searches for physics beyond the presently established Standard Model of the fundamental interactions. The application of laser techniques to control the spatial extent and degree of polarization of essentially massless Radioactive sources in beta-decay experiments should allow studies of the symmetries of the weak interactions with unprecedented precision. Experiments with rare Atoms having particular sensitivities to subtle weak-interaction modifications to Atomic structure should be practical with laser manipulation techniques. We review some of the prospects in this emerging area of experimental research and we describe an example of an ongoing experiment to study the beta decay of the short-lived isotope {sup 21}Na.

S.j. Freedman - One of the best experts on this subject based on the ideXlab platform.

  • Prospects in Radioactive Atom trapping: {sup 21}Na as an example
    1997
    Co-Authors: S.j. Freedman, B. Fujikawa, G. Gwinner, M. A. Rowe
    Abstract:

    Recent demonstrations that laser trapping and cooling techniques are applicable to exotic short-lived Radioactive Atoms are providing new opportunities for better measurements of important fundamental constants and more sensitive searches for physics beyond the presently established Standard Model of the fundamental interactions. The application of laser techniques to control the spatial extent and degree of polarization of essentially massless Radioactive sources in beta-decay experiments should allow studies of the symmetries of the weak interactions with unprecedented precision. Experiments with rare Atoms having particular sensitivities to subtle weak-interaction modifications to Atomic structure should be practical with laser manipulation techniques. We review some of the prospects in this emerging area of experimental research and we describe an example of an ongoing experiment to study the beta decay of the short-lived isotope {sup 21}Na.

  • prospects in Radioactive Atom trapping sup 21 na as an example
    1997
    Co-Authors: S.j. Freedman, B. Fujikawa, G. Gwinner, M. A. Rowe
    Abstract:

    Recent demonstrations that laser trapping and cooling techniques are applicable to exotic short-lived Radioactive Atoms are providing new opportunities for better measurements of important fundamental constants and more sensitive searches for physics beyond the presently established Standard Model of the fundamental interactions. The application of laser techniques to control the spatial extent and degree of polarization of essentially massless Radioactive sources in beta-decay experiments should allow studies of the symmetries of the weak interactions with unprecedented precision. Experiments with rare Atoms having particular sensitivities to subtle weak-interaction modifications to Atomic structure should be practical with laser manipulation techniques. We review some of the prospects in this emerging area of experimental research and we describe an example of an ongoing experiment to study the beta decay of the short-lived isotope {sup 21}Na.

Weichieh Cheng - One of the best experts on this subject based on the ideXlab platform.