Simultaneous dual wavelength CPA operation of the vulcan laser for particle acceleration experiments

J. Collier, D. Neely, R. Allott, C. Danson, S. Hawkes, Z. Najmudin, R. Kingham, Karl Krushelnick, A. Dangor
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Abstract

Summary form only given. A chirped pulse amplification laser configuration capable of particle acceleration through the driving of a plasma beatwave into saturation before modulation instabilities can grow is reported. The configuration is based on generating a single sub-ps, broad bandwidth pulse (/spl sim/16 nm) and stretching and filtering to select two wavelength components (separation /spl sim/7 nm). The two spectral components are temporally stretched (to >100 ps) and separated (by /spl sim/1 ns). The pulses are then amplified in a single Nd:glass chain to greater than 15 J per pulse. Using a single pass reflective grating compressor the pulses are temporally compressed to between 2 and 5 ps and automatically synchronised. Moreover, the system is capable of introducing a chirp into the actual beat, such that the compressed pulses can compensate for relativistic detuning of the plasma wave. The optimum laser amplification and recombination configuration for generating a saturated laser driven beatwave is presented and options for future work discussed.
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同时双波长CPA操作的火神激光粒子加速实验
只提供摘要形式。报道了一种啁啾脉冲放大激光器配置,该配置能够在调制不稳定性增长之前通过驱动等离子体波进入饱和来加速粒子。该配置基于产生单个子ps,宽带宽脉冲(/spl sim/16 nm)和拉伸和滤波以选择两个波长分量(分离/spl sim/7 nm)。两个光谱成分被暂时拉伸(到>100 ps)并被分离(/spl sim/1 ns)。然后,脉冲在单个Nd:玻璃链中被放大到每个脉冲大于15 J。使用单通反射光栅压缩器,脉冲被暂时压缩到2到5ps之间并自动同步。此外,该系统能够在实际的脉冲中引入啁啾,这样压缩的脉冲就可以补偿等离子体波的相对论失谐。提出了产生饱和激光驱动脉冲的最佳激光放大和复合结构,并讨论了未来工作的选择。
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