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Future Research Opportunities in Atomic, Molecular, and Optical Physics
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Fermion molecular dynamics in atomic, molecular, and optical physics
Contemporary Physics, 1998Classical dynamics, often called 'molecular dynamics' when applied to atoms and molecules, is much easier than solving the many-body Schrodinger equation for a number of reasons. In particular, correlation and rearrangement are simple in classical dynamics.
Lawrence Wilets, James S. Cohen
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Computational challenges in atomic, molecular and optical physics
Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences, 2002Six challenges are discussed. These are the laser-driven helium atom; the laser-driven hydrogen molecule and hydrogen molecular ion; electron scattering (with ionization) from one-electron atoms; the vibrational and rotational structure of molecules such as H(3)(+) and water at their dissociation limits; laser-heated clusters; and quantum degeneracy ...
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Atomic, molecular, and optical physics with X-rays
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 1991Abstract With the advent of third-generation synchrotron-radiation sources now being built, research in the area of atomic, molecular, and optical physics using X-rays from these insertion-device-based facilities is expected to experience a renaissance.
Lindle, Dennis W., Crasemann, Bernd
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Optically pumped semiconductor lasers for atomic and molecular physics
SPIE Proceedings, 2015Experiments in atomic, molecular and optical (AMO) physics rely on lasers at many different wavelengths and with varying requirements on spectral linewidth, power and intensity stability. Optically pumped semiconductor lasers (OPSLs), when combined with nonlinear frequency conversion, can potentially replace many of the laser systems currently in use ...
S. Burd +3 more
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Reports on Subfields of Physics: Atomic, Molecular and Optical Physics
Physics Today, 1986Atomic, molecular and optical physics encompasses a broad range of theoretical and experimental research on matter at the atomic and molecular level and on light. In the United States it is pursued by over 300 small groups in university, national and industrial laboratories.
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Ion beam applications in molecular and macromolecular physics (optics, electronics, optoelectronics)
Optical Materials, 1999Abstract We present three major applications of ion beam in the area of molecular or macromolecular physics. Firstly, we report how main electrical parameters varied in function of ion types and implantation parameters; the application area is the fabrication of elementary electronic devices with electroactive polymer (PPP).
André Moliton +4 more
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Applications of Optical Cavities in Modern Atomic, Molecular, and Optical Physics
2003Publisher Summary This chapter discusses applications of optical cavities in modern atomic, molecular, and optical physics. For many contemporary physics experiments, the use of an optical cavity has become a powerful tool for enhancement in detection sensitivities, nonlinear interactions, and quantum dynamics. Indeed, an optical cavity allows one to
Jun Ye, Theresa W. Lynn
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