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Home > Art, Film & Photography > Atomic, Molecular, and Optical Physics Introduction: Doppler Cooling, Fine Structure, Atom Optics, Fermi Resonance, Larmor Precession
Atomic, Molecular, and Optical Physics Introduction: Doppler Cooling, Fine Structure, Atom Optics, Fermi Resonance, Larmor Precession

Atomic, Molecular, and Optical Physics Introduction: Doppler Cooling, Fine Structure, Atom Optics, Fermi Resonance, Larmor Precession


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About the Book

Chapters: Doppler Cooling, Fine Structure, Atom Optics, Fermi Resonance, Larmor Precession, Pariser-parr-pople Method, Lyman-Alpha Line, Molecular Physics, Reaction Coordinate, Atomic Coherence, Rrkm Theory, Solarization, Degenerate Orbital, Electron Tomography, Isotopic Shift, Associative Ionization, K-Edge, Cotton Effect, Chemi-Ionization, Autler-townes Effect, Sisyphus Cooling, Kramers Theorem, Recoil Temperature, Appearance Energy, Charge-Exchange Ionization, Spin Probe, Electronic State, Adiabatic Ionization, Laser Snow. Source: Wikipedia. Pages: 78. Not illustrated. Free updates online. Purchase includes a free trial membership in the publisher's book club where you can select from more than a million books without charge. Excerpt: Doppler cooling is a mechanism that can be used to trap and cool atoms. Its name is sometimes used synonymously with laser cooling. It was simultaneously proposed by two groups in 1975, the first being David J. Wineland and Hans Georg Dehmelt and the second being Theodor W. H nsch and Arthur Leonard Schawlow. It was first demonstrated by Wineland, Drullinger, and Walls in 1978 and shortly afterwards by Neuhauser, Hohenstatt, Toschek and Dehmelt. One conceptually simple form of laser cooling is referred to as optical molasses, since the dissipative optical force resembles the viscous drag on a body moving through molasses. Steven Chu, Claude Cohen-Tannoudji and William D. Phillips were awarded the 1997 Nobel Prize in Physics for their work in laser cooling. This technique works by tuning the frequency of light slightly below an electronic transition in an atom. Because the light is detuned to the "red" (i.e. at lower frequency) of the transition, the atoms will absorb more photons if they move towards the light source, due to the Doppler effect. Thus if one applies light from two opposite directions, the atoms will always absorb more photons from the laser beam pointing opposite to their dir...More: http: //booksllc.net/?id=414755


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Product Details
  • ISBN-13: 9781155937922
  • Publisher: Books LLC
  • Publisher Imprint: Books LLC
  • Height: 152 mm
  • Sub Title: Doppler Cooling, Fine Structure, Atom Optics, Fermi Resonance, Larmor Precession
  • Width: 229 mm
  • ISBN-10: 1155937929
  • Publisher Date: 15 Sep 2010
  • Binding: Paperback
  • Spine Width: 5 mm
  • Weight: 127 gr


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