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Decoherence effects of motion-induced radiation.


DE2001772604

Publication Date 2000
Personal Author Neto, P.; Dalvit, D.
Page Count 10
Abstract The radiation pressure coupling with vacuum fluctuations gives rise to energy damping and decoherence of an oscillating particle. Both effects result from the emission of pairs of photons, a quantum effect related to the fluctuations of the Casimir force. We discuss different alternative methods for the computation of the decoherence time scale. We take the example of a spherical perfectly-reflecting particle, and consider the zero and high temperature limits. We also present short general reviews on decoherence and dynamical Casimir effect.
Keywords
  • Waste water
  • Oscillations
  • Fluctuations
  • Photon emission
  • Radiation pressure
  • Particles
  • Calculation methods
Source Agency
  • Technical Information Center Oak Ridge Tennessee
NTIS Subject Category
  • 46 - Physics
Corporate Authors Los Alamos National Lab., NM.; Department of Energy, Washington, DC.
Document Type Conference Proceedings
NTIS Issue Number 200125
Contract Number
  • W-7405-ENG-36
Decoherence effects of motion-induced radiation.
Decoherence effects of motion-induced radiation.
DE2001772604

  • Waste water
  • Oscillations
  • Fluctuations
  • Photon emission
  • Radiation pressure
  • Particles
  • Calculation methods
  • Technical Information Center Oak Ridge Tennessee
  • 46 - Physics
  • W-7405-ENG-36
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