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Edge-pumped multi-slab amplifier for inertial fusion energy (IFE)

机译:用于惯性融合能量的边缘泵浦多板放大器(IFE)

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We proposed a novel laser amplifier for inertial fusion energy (IFE) based on an edge-pumped, gas-cooled multi-slab architecture. Compared to the face-pumped laser amplifiers for IFE, this architecture enables the pump, coolant and laser propagating orthogonally in the amplifier, thereby decoupling them in space and being beneficial to construction of the amplifier. To satisfy the high efficiency required for IFE, high-irradiance rectangle-waveguide coupled diode laser arrays are employed in the edge-pumped architecture and the pump light will be homogenized by total internal reflection. A traverse gradient doping profile is applied to the gain media, thus the pump absorption and gain uniformity can be separately optimized. Furthermore, the laser beam normal to the surfaces of the gas-cooled slabs will experience minimum thermal wavefront distortions in the amplifier head and ensure high beam quality. Since each slab has its own pump source and uniform gain in the aperture, power scaling can be easily achieved by placing identical slabs along the laser beam axis. Our investigations might provide an efficient and convenient way to design and optimize the amplifiers for IFE.
机译:我们提出了一种用于基于边缘泵送的气体冷却的多板架构的惯性融合能量(IFE)的新型激光放大器。与IFE的面部泵浦激光放大器相比,该体系结构使泵,冷却剂和激光器在放大器中正交地传播,从而在空间中与放大器构造有利于构造。为了满足IFE所需的高效率,在边缘泵浦架构中采用高辐照度矩形波导耦合二极管激光阵列,并且泵浦光将通过全内反射均匀化。将横向梯度掺杂曲线施加到增益介质,因此可以单独优化泵吸收和增益均匀性。此外,垂直于气体冷却板的表面的激光束将在放大器头中体验最小的热波形失真,并确保高光束质量。由于每个板坯具有其自身的泵浦源和孔的均匀增益,因此可以通过沿激光束轴放置相同的板坯来容易地实现功率缩放。我们的调查可能提供一种高效便捷的方式来设计和优化IFE的放大器。

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