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首页> 外文期刊>New journal of physics >Volkov transform generalized projection algorithm for attosecond pulse characterization
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Volkov transform generalized projection algorithm for attosecond pulse characterization

机译:Volkov变换用于阿秒脉冲特征的广义投影算法。

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Download video Transcript View all New J. Phys. video abstracts An algorithm for characterizing attosecond extreme ultraviolet pulses that is not bandwidth-limited, requires no interpolation of the experimental data, and makes no approximations beyond the strong-field approximation is introduced. This approach fully incorporates the dipole transition matrix element into the retrieval process. Unlike attosecond retrieval methods such as phase retrieval by omega oscillation filtering (PROOF), or improved PROOF, it simultaneously retrieves both the attosecond and infrared (IR) pulses, without placing fundamental restrictions on the IR pulse duration, intensity or bandwidth. The new algorithm is validated both numerically and experimentally, and is also found to have practical advantages. These include an increased robustness to noise, and relaxed requirements for the size of the experimental dataset and the intensity of the streaking pulse.
机译:下载视频抄本查看全部New J. Phys。视频摘要介绍了一种用于表征亚秒级极端紫外线脉冲的算法,该算法不受带宽限制,不需要对实验数据进行插值,并且除了强场近似之外也没有近似值。这种方法将偶极跃迁矩阵元素完全纳入了检索过程。与诸如通过欧米茄振荡滤波(PROOF)进行相位检索或改进的PROOF之类的阿秒检索方法不同,它可以同时检索阿秒和红外(IR)脉冲,而对IR脉冲的持续时间,强度或带宽没有根本限制。新算法在数值上和实验上都得到了验证,并且被发现具有实际优势。这些措施包括增强了对噪声的鲁棒性,以及对实验数据集大小和条纹脉冲强度的宽松要求。

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