Université de Genève, GAP-Biophotonics, 20 rue de l'Ecole de Médecine, 1211 Geneva 4, Switzerland.
Phys Rev Lett. 2010 Mar 12;104(10):103903. doi: 10.1103/PhysRevLett.104.103903.
We show that higher-order nonlinear indices (n(4), n(6), n(8), n(10)) provide the main defocusing contribution to self-channeling of ultrashort laser pulses in air and argon at 800 nm, in contrast with the previously accepted mechanism of filamentation where plasma was considered as the dominant defocusing process. Their consideration allows us to reproduce experimentally observed intensities and plasma densities in self-guided filaments.
我们表明,在 800nm 波长的空气中和氩气中,更高阶的非线性指数(n(4)、n(6)、n(8)、n(10))对超短激光脉冲的自导波起着主要的散焦作用,而之前被接受的细丝化机制则认为等离子体是主要的散焦过程。考虑到这些因素,我们能够重现自导丝中实验观测到的强度和等离子体密度。