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S. Yu. Kalmykov

Publications and source records attributed to S. Yu. Kalmykov.

2 recordsLinked to original sources

Laser wakefield acceleration by petawatt ultra-short laser pulses

An ultra-short (about 30 fs) petawatt laser pulse focused with a wide focal spot (about 100 microns) in a rarefied plasma (electron density of order 10^{17} per cm^3) excites a nonlinear plasma wakefield which can accelerate injected electrons up to the GeV energy without any pulse channelling. In these conditions, propagation of the laser pulse with an over-critical power for relativistic self-focusing is almost the same as in vacuum. The nonlinear quasi-plane wake plasma wave, whose amplitude and phase velocity vary along the laser path, effectively traps and accelerates injected electrons with a wide range of initial energies. Electrons accelerated along two Rayleigh lengths (about eight centimeters) can gain an energy up to 1 GeV. In particular, the electrons trapped from quite a long (of order 330 fs) non-resonant electron beamlet of 1 MeV particles eventually form a low emittance bunch with energies in the range 900 MeV and energy spread about 10%. All these conclusions follow from two-dimensional simulations performed in cylindrical geometry by means of the fully relativistic time-averaged particle code WAKE.

physics.plasm-ph

Statistical Properties of Schrödinger Real and Imaginary Cat States

We study the Photon statistics in the superpositions of coherent states $|α\rangle$ and $|α^*\rangle$ named ``Schrödinger real and imaginary cat states''. The oscillatory character of photon distribution function (PDF) emerging due to the quantum interference between the two components is shown, and the phenomenon of the quadrature squeezing is observed for the moderate values of $|α|\sim 1$. Despite the quantity ${\langle\triangle n^2\rangle}/{\langle n\rangle}$ tends to the unit value (like in the Poissonian PDF) at $|α|\gg 1$, the photon statistics is essentially non-Poissonian for all values of $|α|$. The factorial moments and cumulants of the PDF are calculated, and the oscillations of their ratio are demonstrated.

hep-th