Author:
Ginzburg V.N.,Yakovlev I.V.,Zuev A.S.,Korobeynikova A.P.,Kochetkov A.A.,Kuzmin A.A.,Mironov S.Yu.,Shaykin A.A.,Shaikin I.A.,Khazanov E.A.
Abstract
Abstract
Two-stage compression of laser pulses with a power of 250 TW is experimentally realised by broadening their spectrum during self-phase modulation in fused silica and subsequent dispersion compensation upon reflection from chirping mirrors. A five-fold decrease in the duration is demonstrated, from 75 to 15 fs, with a B-integral value of about 5 at each stage. It is possible to avoid small-scale self-focusing due to self-filtering of the laser beam during free propagation in vacuum. With optimal parameters of the dispersive mirror, the pulse can be compressed to a duration of less than 5 fs.
Subject
Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Statistical and Nonlinear Physics,Electronic, Optical and Magnetic Materials
Cited by
23 articles.
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