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an atom
Effect of time reversal in the magnetization of an atom by a resonant light pulse
      
The probability wL of Lorentzian ionization, which arises when an atom or ion moves in a constant magnetic field, is calculated in the quasiclassical approximation.
      
The interaction conditions under which the velocity of an atom is damped to a value that depends only on the magnitude of the magnetic field and the position of the atom at the moment it is irradiated by the laser field are found.
      
Resonance fluorescence in an atom + dielectric microsphere system excited by a single photon
      
A new representation is found for the interaction of intense circularly polarized light with an atom.
      
The linewidth for an atom located near an ideally conducting tip or inside a conical cavity in an ideal conductor is analyzed.
      
At the same time, the linewidth for an atom in a conical cavity can strongly increase or strongly decrease, depending on the position of the atom and the opening angle of the cavity.
      
It is shown that the intensity of the harmonics is determined by the quantum properties of the electron distribution in an atom before it is ionized.
      
Two-photon fluorescence spectrum in an atom + dielectric microsphere system
      
We have discovered a new friction force, acting on an atom in the field of two oppositely propagating elliptically polarized waves of low intensity.
      
The energy and angular distributions of photoelectrons in the photoionization of an atom or ion by powerful laser radiation are calculated.
      
A new representation of the interaction between an atom and an intense elliptically polarized electromagnetic field
      
A new representation of the interaction between a laser field and an atom is obtained.
      
The application of the new representation to the calculation of nonlinear effects and electron scattering by an atom in a field are discussed
      
The effect of excitation of an atom in an initially photon-free nonstationary cavity is predicted.
      
The presence of an atom in the nonstationary cavity affects the photon creation process.
      
Self-consistent equations for the interaction of an atom with an electromagnetic field of arbitrary intensity
      
A system of equations is suggested for the interaction of an atom with an electromagnetic field of arbitrary intensity.
      
Generation of compressed sub-poisson Bose condensate by an atom laser
      
The possibility of detecting an atom by a single photon with nanometer spatial resolution and nanosecond time resolution is studied.
      
 

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