研究目的
Investigating the enhancement of target normal sheath acceleration (TNSA) of ions through the interaction of relativistic laser pulses with a multichannel target, aiming to achieve higher maximum ion energy and laser-to-ion energy conversion efficiency.
研究成果
The interaction of relativistic laser pulses with a multichannel target significantly enhances the TNSA of ions, resulting in higher maximum ion energy and laser-to-ion energy conversion efficiency. The dense attosecond hot electron bunches pulled out from the wires by the laser light, and their subsequent acceleration and heating, create a stronger and more extended sheath electric field behind the target foil. This leads to the production of more energetic and better collimated TNSA ions. The proposed multichannel target is more effective than existing targets with micro- or nanofront structures and is robust with respect to laser and channel parameters.
研究不足
The study is based on 2D simulations, which may not fully capture all aspects of the 3D physical reality. The proposed multichannel structure corresponds to a series of planar plates with an unlimited x-direction width in real 3D geometry, which might not be practical for all applications.