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Amplification of light pulses with orbital angular momentum (OAM) in nitrogen ions lasing

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arxiv 2307.04282 v2 pith:CCOT32XY submitted 2023-07-09 physics.optics physics.atom-phphysics.plasm-phquant-ph

Amplification of light pulses with orbital angular momentum (OAM) in nitrogen ions lasing

classification physics.optics physics.atom-phphysics.plasm-phquant-ph
keywords seedpulseamplificationamplifiedlightnitrogenbeamgaussian
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nitrogen ions pumped by intense femtosecond laser pulses give rise to optical amplification in the ultraviolet range. Here, we demonstrated that a seed light pulse carrying orbital angular momentum (OAM) can be significantly amplified in nitrogen plasma excited by a Gaussian femtosecond laser pulse. With the topological charge of +1 and -1, we observed an energy amplification of the seed light pulse by two orders of magnitude, while the amplified pulse carries the same OAM as the incident seed pulse. Moreover, we show that a spatial misalignment of the plasma amplifier with the OAM seed beam leads to an amplified emission of Gaussian mode without OAM, due to the special spatial profile of the OAM seed pulse that presents a donut-shaped intensity distribution. Utilizing this misalignment, we can implement an optical switch that toggles the output signal between Gaussian mode and OAM mode. This work not only certifies the phase transfer from the seed light to the amplified signal, but also highlights the important role of spatial overlap of the donut-shaped seed beam with the gain region of the nitrogen plasma for the achievement of OAM beam amplification.

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