Laser filamentation generated when intense laser pulses propagate in air has been an attractive phenomenon having a variety of potential applications such as detection and spectroscopy of gases at far distant places. It was discovered recently that the filamentation in air induces ‘lasing’, showing that electronically excited N2+ is population-inverted, exhibiting marked contrast to the common understanding that molecular ions generated by intense laser fields are prepared mostly in their electronic ground states. Here, to clarify the mechanism of the population inversion, we adopt few-cycle laser pulses, and experimentally demonstrate that the lasing at 391 nm occurs instantaneously after N2+ is produced. Numerical simulations clarify that...
The laser-like coherent emission at 391nm from N$_2$ gas irradiated by strong 800nm pump laser and w...
International audienceWe investigate the pump wavelength dependence of population inversion in a nit...
International audienceWe report on strong backward stimulated emission at 337 nm in Nitrogen gas pum...
Laser filamentation generated when intense laser pulses propagate in air has been an attractive phen...
Air lasing in the nitrogen molecular ion is not well understood because the complex physics responsi...
The time-dependent population transfer process of N2+ generated in an intense laser pulse has been i...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
In standard lasers, light amplification requires population inversion between an upper and a lower s...
The experimental results of the inversion population mechanisms study in the resonant electronic tra...
The laser-like coherent emission at 391nm from N$_2$ gas irradiated by strong 800nm pump laser and w...
International audienceWe investigate the pump wavelength dependence of population inversion in a nit...
International audienceWe report on strong backward stimulated emission at 337 nm in Nitrogen gas pum...
Laser filamentation generated when intense laser pulses propagate in air has been an attractive phen...
Air lasing in the nitrogen molecular ion is not well understood because the complex physics responsi...
The time-dependent population transfer process of N2+ generated in an intense laser pulse has been i...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
International audienceWe propose a new mechanism to explain the origin of optical gain in the transi...
In standard lasers, light amplification requires population inversion between an upper and a lower s...
The experimental results of the inversion population mechanisms study in the resonant electronic tra...
The laser-like coherent emission at 391nm from N$_2$ gas irradiated by strong 800nm pump laser and w...
International audienceWe investigate the pump wavelength dependence of population inversion in a nit...
International audienceWe report on strong backward stimulated emission at 337 nm in Nitrogen gas pum...