Revisiting self-seeding mechanism by generating vector ultraviolet N lasing
arXiv:2502.01414 · doi:10.1038/s42005-026-02535-5
Abstract
An intense femtosecond laser pulse can generate ultraviolet air lasing, offering a promising remote light source. A long-standing hypothesis is whether it is seeded by a self-generated spectral component, such as the second harmonic that is inevitably produced by the plasma gradient. Here, we report the generation of both radially and azimuthally polarized N lasing driven by a single 800-nm cylindrical vector beam. Meanwhile, the same vector pump was applied to drive the generation of vector second harmonics in plasma. The radially polarized pump produces radially polarized second harmonics while the azimuthally polarized pump yields no second harmonic generation owing to the radial direction of plasma gradient. The absence of the azimuthally polarized second harmonic rules out the hypothesis of self-seeding by second harmonics, as both radially and azimuthally polarized N lasing are observed with comparable intensities. By characterizing the spatial phase distribution of vector 391-nm lasing, we concluded that its phase is synchronized with the pump. These results suggest that amplified spontaneous emissions are the origin of N lasing under the most common condition of low gas pressure, which was effectively demonstrated by theoretical simulations. Our work provides a promising method for remotely generating vector ultraviolet light sources.
5 figures
References in corpus (21)
- Electromagnetic Force and Momentum
- Electromagnetic Angular Momentum
- High gain backward lasing in air
- High-brightness switchable multi-wavelength remote laser in air
- Roadmap on spatiotemporal light fields
- Population Redistribution among Multiple Electronic States of Molecular Nitrogen Ions in Strong Laser Fields
- Recollision induced superradiance of ionized nitrogen molecules
- Spatial coherence of random laser emission
- Self-seeded lasing in ionized air pumped by 800 nm femtosecond laser pulses
- Rotational Quantum Beat Lasing Without Inversion
- Self-induced white-light seeding laser in a femtosecond laser filament
- Electronic State Population Dynamics upon Ultrafast Strong Field Ionization and Fragmentation of Molecular Nitrogen
- Role of rotational coherence in femtosecond-pulse-driven nitrogen ion lasing
- Structured air lasing of N2+
- Extreme nonlinear Raman interaction of an ultrashort nitrogen ion laser with an impulsively excited molecular wavepacket
- Spatial Coherence of Light in Collective Spontaneous Emission
- Coherence from multiorbital tunneling ionization of molecules
- Powerful supercontinuum vortices generated by femtosecond vortex beams with thin plates
- Amplification of light pulses with orbital angular momentum (OAM) in nitrogen ions lasing
- Probing Vibronic Coherence in Charge Migration of Molecules Using Strong Field Sequential Double Ionization
- Controlling the polarization of nitrogen ion lasing